WO1991002715A2 - Ultraviolet light-absorbing compounds and sunscreen formulations and polymeric materials containing such compounds or residues thereof - Google Patents
Ultraviolet light-absorbing compounds and sunscreen formulations and polymeric materials containing such compounds or residues thereof Download PDFInfo
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- WO1991002715A2 WO1991002715A2 PCT/US1990/004573 US9004573W WO9102715A2 WO 1991002715 A2 WO1991002715 A2 WO 1991002715A2 US 9004573 W US9004573 W US 9004573W WO 9102715 A2 WO9102715 A2 WO 9102715A2
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- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61Q—SPECIFIC USE OF COSMETICS OR SIMILAR TOILETRY PREPARATIONS
- A61Q17/00—Barrier preparations; Preparations brought into direct contact with the skin for affording protection against external influences, e.g. sunlight, X-rays or other harmful rays, corrosive materials, bacteria or insect stings
- A61Q17/04—Topical preparations for affording protection against sunlight or other radiation; Topical sun tanning preparations
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61K—PREPARATIONS FOR MEDICAL, DENTAL OR TOILETRY PURPOSES
- A61K8/00—Cosmetics or similar toiletry preparations
- A61K8/18—Cosmetics or similar toiletry preparations characterised by the composition
- A61K8/30—Cosmetics or similar toiletry preparations characterised by the composition containing organic compounds
- A61K8/40—Cosmetics or similar toiletry preparations characterised by the composition containing organic compounds containing nitrogen
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61K—PREPARATIONS FOR MEDICAL, DENTAL OR TOILETRY PURPOSES
- A61K8/00—Cosmetics or similar toiletry preparations
- A61K8/18—Cosmetics or similar toiletry preparations characterised by the composition
- A61K8/30—Cosmetics or similar toiletry preparations characterised by the composition containing organic compounds
- A61K8/46—Cosmetics or similar toiletry preparations characterised by the composition containing organic compounds containing sulfur
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61K—PREPARATIONS FOR MEDICAL, DENTAL OR TOILETRY PURPOSES
- A61K8/00—Cosmetics or similar toiletry preparations
- A61K8/18—Cosmetics or similar toiletry preparations characterised by the composition
- A61K8/72—Cosmetics or similar toiletry preparations characterised by the composition containing organic macromolecular compounds
- A61K8/84—Cosmetics or similar toiletry preparations characterised by the composition containing organic macromolecular compounds obtained by reactions otherwise than those involving only carbon-carbon unsaturated bonds
- A61K8/85—Polyesters
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- C—CHEMISTRY; METALLURGY
- C07—ORGANIC CHEMISTRY
- C07C—ACYCLIC OR CARBOCYCLIC COMPOUNDS
- C07C255/00—Carboxylic acid nitriles
- C07C255/01—Carboxylic acid nitriles having cyano groups bound to acyclic carbon atoms
- C07C255/32—Carboxylic acid nitriles having cyano groups bound to acyclic carbon atoms having cyano groups bound to acyclic carbon atoms of a carbon skeleton containing at least one six-membered aromatic ring
- C07C255/41—Carboxylic acid nitriles having cyano groups bound to acyclic carbon atoms having cyano groups bound to acyclic carbon atoms of a carbon skeleton containing at least one six-membered aromatic ring the carbon skeleton being further substituted by carboxyl groups, other than cyano groups
-
- C—CHEMISTRY; METALLURGY
- C08—ORGANIC MACROMOLECULAR COMPOUNDS; THEIR PREPARATION OR CHEMICAL WORKING-UP; COMPOSITIONS BASED THEREON
- C08G—MACROMOLECULAR COMPOUNDS OBTAINED OTHERWISE THAN BY REACTIONS ONLY INVOLVING UNSATURATED CARBON-TO-CARBON BONDS
- C08G63/00—Macromolecular compounds obtained by reactions forming a carboxylic ester link in the main chain of the macromolecule
- C08G63/66—Polyesters containing oxygen in the form of ether groups
- C08G63/668—Polyesters containing oxygen in the form of ether groups derived from polycarboxylic acids and polyhydroxy compounds
- C08G63/676—Polyesters containing oxygen in the form of ether groups derived from polycarboxylic acids and polyhydroxy compounds in which at least one of the two components contains aliphatic unsaturation
-
- C—CHEMISTRY; METALLURGY
- C08—ORGANIC MACROMOLECULAR COMPOUNDS; THEIR PREPARATION OR CHEMICAL WORKING-UP; COMPOSITIONS BASED THEREON
- C08G—MACROMOLECULAR COMPOUNDS OBTAINED OTHERWISE THAN BY REACTIONS ONLY INVOLVING UNSATURATED CARBON-TO-CARBON BONDS
- C08G63/00—Macromolecular compounds obtained by reactions forming a carboxylic ester link in the main chain of the macromolecule
- C08G63/68—Polyesters containing atoms other than carbon, hydrogen and oxygen
- C08G63/685—Polyesters containing atoms other than carbon, hydrogen and oxygen containing nitrogen
- C08G63/6854—Polyesters containing atoms other than carbon, hydrogen and oxygen containing nitrogen derived from polycarboxylic acids and polyhydroxy compounds
- C08G63/6858—Polycarboxylic acids and polyhydroxy compounds in which at least one of the two components contains aliphatic unsaturation
-
- C—CHEMISTRY; METALLURGY
- C08—ORGANIC MACROMOLECULAR COMPOUNDS; THEIR PREPARATION OR CHEMICAL WORKING-UP; COMPOSITIONS BASED THEREON
- C08G—MACROMOLECULAR COMPOUNDS OBTAINED OTHERWISE THAN BY REACTIONS ONLY INVOLVING UNSATURATED CARBON-TO-CARBON BONDS
- C08G63/00—Macromolecular compounds obtained by reactions forming a carboxylic ester link in the main chain of the macromolecule
- C08G63/68—Polyesters containing atoms other than carbon, hydrogen and oxygen
- C08G63/688—Polyesters containing atoms other than carbon, hydrogen and oxygen containing sulfur
- C08G63/6884—Polyesters containing atoms other than carbon, hydrogen and oxygen containing sulfur derived from polycarboxylic acids and polyhydroxy compounds
- C08G63/6888—Polycarboxylic acids and polyhydroxy compounds in which at least one of the two components contains aliphatic unsaturation
-
- C—CHEMISTRY; METALLURGY
- C08—ORGANIC MACROMOLECULAR COMPOUNDS; THEIR PREPARATION OR CHEMICAL WORKING-UP; COMPOSITIONS BASED THEREON
- C08G—MACROMOLECULAR COMPOUNDS OBTAINED OTHERWISE THAN BY REACTIONS ONLY INVOLVING UNSATURATED CARBON-TO-CARBON BONDS
- C08G85/00—General processes for preparing compounds provided for in this subclass
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y10—TECHNICAL SUBJECTS COVERED BY FORMER USPC
- Y10T—TECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
- Y10T428/00—Stock material or miscellaneous articles
- Y10T428/13—Hollow or container type article [e.g., tube, vase, etc.]
-
- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y10—TECHNICAL SUBJECTS COVERED BY FORMER USPC
- Y10T—TECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
- Y10T428/00—Stock material or miscellaneous articles
- Y10T428/13—Hollow or container type article [e.g., tube, vase, etc.]
- Y10T428/1352—Polymer or resin containing [i.e., natural or synthetic]
Definitions
- This invention pertains to certain novel polymethine compounds which exhibit unique ultraviolet light absorbing properties.
- This invention also concerns polymer compositions containing at least one of the poly-methine compounds which are useful for protecting various substrates from the deleterious effects of ultraviolet light.
- UV light rays present in solar radiation.
- the UV rays have been divided into three regions:
- UV-A Region (320-400 nm), UV-B Region (290-320 nm) and UV-C Region (200-290 nm).
- the UV-C Region has the highest energy and most damaging radiation, but is largely absorbed by the ozone layer. UV light in the UV-B Region, also called the Erythemal or Burning
- UV-A radiation also called the Tanning Region, causes tanning but also may cause reddening of the skin and sunburn upon prolonged exposure.
- UV light-absorbing chemicals capable of absorbing most of the UV-B light, which is the most likely to cause severe sunburn.
- formulations have included a combination of UV-A and UV-B light absorbing
- novel poly-methine compounds provided by this invention absorb UV light over a wide range of
- the polymethine compounds of our invention have the formula
- each R 1 is independently selected from cyano
- substituted, carbocyclic or hetero ⁇ yclic aryl radical an unsubstituted or substituted alkanoyl, cycloalkanoyl or aroyl radical; an unsubstituted or substituted carbamoyl radical; or an unsubstituted or substituted alkylsulfonyl, cycloalkylsulfonyl or arylsulfonyl radical;
- each R 2 is independently selected from cyano or an unsubstituted or substituted alkoxycarbonyl
- each A is independently selected from an
- each Z is independently selected from -O- or -S-;
- L is an organic linking group bonded by non-oxo carbon atoms to each Z atom.
- the described poly-methine compounds have been found to exhibit two strong absorption bands of almost equal intensity, a characteristic which renders the compounds particularly effective in absorbing UV light over an extended wavelength range. This absorption renders the compounds unique since prior art compounds derived from p-hydroxybenzaldehyde and various active methylene compounds such as cyanoacetic acid esters, for example those disclosed in U.S. Patents 3,706,700,
- Cinnamic acid derivatives such as alkyl p-alkoxycinnamates, are known to be useful UV-B absorbers, having an absorption maximum in the 300 to 310 range, for sunscreen
- a particularly valuable embodiment of our invention includes polymeric compositions, e.g., polyesters, having reacted therewith or copolymerized therein at least one compound of formula (I) which contains one or more reactive groups. These polymeric compositions are not readily absorbed through the stratum corneum layer of the skin and thus contact of the UV light-absorbing agent with the epidermis is prevented or reduced substantially.
- the polymer compositions provided by this invention comprise a condensation polymer such as ester-containing polymers, including polycarbonates and, especially, polyesters, (1) having physically admixed therein one or more of the poly-methine compounds of formula (I) and (2) having reacted therewith or copolymerized therein the residue of at least one of the compounds of
- polymer compositions may be used, as mentioned above, as UV light absorbers in sunscreen preparations.
- the polymer compositions also may be used in the preparation of coatings, film and sheet material for protecting substrates from UV light.
- sheet material fabricated from the polymer compositions of our invention may be used in the
- the polymer compositions of this invention also may be used in the manufacture of containers suitable for packaging a variety of materials. Many products such as certain fruit juices, condiments, beverages, food products, cosmetics and shampoos are affected
- UV radiation in the range of 290 to 380 nm is the most damaging.
- the absorption by the packaging material of this portion of the spectrum increases, the less the degradation of UV-sensitive products contained therein will be.
- the alkyl and alkoxy moieties of the groups recited in the definitions of R 1 and R 2 can be unsubstituted or substituted alkyl and alkoxy of up to 24 carbon atoms. Hydroxy, alkoxy, hydroxyalkoxy, halogen, alkanoyloxy, alkoxycarbonyl, cyano, carbamoyl, aryl, aryloxy, cycloalkyl,
- arylsulfonamido, succinimido, phthalimido and the heterocyclic groups set forth below are examples of the substituents which may be present on the substituted alkyl groups and alkoxy moieties which R 1 and R 2 can represent.
- the cycloalkyl moieties of the groups recited in the definitions of R 1 and R 2 can be
- the carbamoyl groups which R 1 can represent may be unsubstituted or substituted carbamoyl such as N-alkylcarbamoyl, N,N-dialkylcarbamoyl, N-cycoalkylcarbamoyl, N-alkyl-N-cycloalkylcarbamoyl, N-arylcarbamoyl, N-alkyl-N-arylcarbamoyl and the like.
- aryl moieties of the groups recited in the definitions of R 1 and R 1 can be unsubstituted or substituted carbocyclic aryl containing 6 to 12 carbon atoms or unsubstituted or substituted heterocyclic aryl containing 5 to 10 ring atoms. Examples of the
- substituents which may be present on the aryl groups include alkyl and the substituents set forth in the preceding paragraph.
- the 1,2-phenylene and 1,2-naphthylene residues represented by A can be unsubstituted or substituted, for example, with alkyl, cycloalkyl, aryl, alkoxy, halogen, etc. Further descriptions and examples of the methine residues
- methylene residues A are bonded to the methine residues at the 1-position and to oxygen or sulfur atoms Z at the 2-position.
- the organic linking group represented by L is bonded to the adjacent oxygen of sulfur atoms (atoms represented by Z) through non-oxo carbon atoms,
- atoms Z are bonded directly to non-carbonylic carbon atoms, e.g., unsubstituted or substituted methylene groups, a methylidene group and an
- linking group L is selected from a wide variety of alkylene, alkenylene, alkynylene, cycloalkylene, carbocyclic and heterocyclic arylene and combinations of such divalent groups.
- the alkylene linking groups may contain within their main chain hetero atoms, e.g., oxygen, sulfur, sulfonyl, nitrogen, substituted
- cyclic groups such as cycloalkylene, carbocyclic arylene, divalent aromatic heterocyclic groups or ester moieties such as
- alkylene linking groups containing a cyclic moiety in the linking chain include:
- the carbocyclic groups may be cycloalkylene such as 1,2-, 1,3- and 1, 4-cyclohexylene, 1,2-, 1,3- and
- divalent heterocyclic groups include 1,4-phenylene and 2,6- and 2,7-naphthylene.
- divalent heterocyclic groups include
- R 1 and R 2 are defined hereinabove; diazines such as 2,4-pyrimidindiyl, 6-methyl-2,4-pyrimidindiyl,
- 2-methyl-3-oxo-4,5-pyridazindiyl dicyanopyridines such as 3, 5-dicyano-2, 6-pyridindiyl and 4-phenyl-3,5-cyano-2,6-pyridindiyl; quinolines and isoquinolines such as 2,4-quinolindiyl and 2,8-isoquinolinediyl;
- quinoxalines such as 2,3-quinoxalindiyl
- azoles such as 2,5-thiazoldiyl, 5-methylene-2-thiazolyl
- maleimides such as 1-methyl-3,4-maleimidediyl and 1-phenyl-3,4-maleimidediyl.
- the acyclic moieties of the linking group represented by L also may be
- linking group L may be substituted with alkyl as well as with the substituents already mentioned.
- the nitrogen atom of the nitrogen containing alkylene groups may be substituted, for example, with alkyl, aryl, alkanoyl, aroyl, alkylsulfonyl, or carbamoyl, e.g.,
- condensation polymer is derived.
- reactive substituents include carbonyl halides such as carbonyl chloride, carboxy, alkoxycarbonyl, alkenyloxycarbonyl, cycloalkoxycarbonyl, aryloxycarbonyl, amino, hydroxy, esterified hydroxy, i.e., acyloxy, groups such as carboxylic acid esters, e.g.,
- alkanoyloxy, cycloalkanoyloxy and aroyloxy carbamic acid esters, e.g., N-alkylcarbamoyloxy and N-arylcarbamoyloxy and carbonate esters, e.g., ethoxycarbonyloxy.
- the poly-methine residue may be
- the reactive substituent or substituents are alkoxycarbonyl, alkenyloxycarbonyl, cycloalkoxycarbonyl, aryloxycarbonyl, or acyloxy
- the alkyl, alkenyl, cycloalkyl and aryl residues and the acid residues of the acyloxy substituents are displaced or removed from the poly-methine compound upon reaction with the polymer or polymer precursor.
- the preferred poly-methine compounds of our invention are those wherein
- R 1 is an unsubstituted or substituted alkoxycarbonyl, cycloalkoxycarbonyl or aryloxycarbonyl radical containing up to 20 carbon atoms;
- R 2 is cyano
- A is unsubstituted 1,2-phenylene
- Z is -O-
- L is alkylene of up to 12 carbon atoms, 2-hydroxy-1,3-propanediyl, 2-methyl-1,3-propanediyl, oxy-bis-ethylene, i.e., -CH 2 CH 2 OCH 2 CH 2 - , oxy-bis-1,4-butanediyl, sulfonyl-bis-ethylene, thio-bis-ethylene, 1,2-, 1,3- and 1,4-phenylene-bis-methylene, 1,2-,
- 1,3- and 1,4-phenylene-bis-ethylene 1,4-cyclohexylene-bis-methylene, 1,2-, 1,3- and 1,4-phenylene-bis-(oxyethylene), i.e., -CH 2 CH 2 O-C 6 H 4 - OCH 2 CH 2 - , methylsulfonylimino-bis-ethylene,
- poly-methine compounds which are particularly preferred have the formula
- R 3 is alkyl of up to 20 carbon atoms and L is alkylene of 2 to 8 carbon atoms, 1,2-, 1,3- or 1,4- phenylenedimethylene or 1,2-, 1,3- or
- inventions may be prepared according to known procedures by reacting aldehydes (III) with active methylene compounds (IV) under Knoevenagel conditions:
- Aldehydes (III) may be obtained by reacting
- dialkylating compounds (VI) may be
- Salicylaldehyde 29.7 g, 0.243 mol
- 1,2-dibromoethane (22.9 g, 0.122 mol)
- water 200 mL
- aqueous sodium hydroxide (19.5 g, 0.244 mol) are mixed and heated with stirring at 90 to 95°C under nitrogen for about 24 hours. The reaction mixture is then cooled and the pH is adjusted to 9. The product is collected by filtration, washed with water and then isopropanol and dried in air to yield crude 2,2'-[(1,2- ethanediyl)bis(oxy)]-bis[benzaldehyde]. The crude product is mixed with isopropanol and the mixture is heated for 20 minutes and then cooled. The product is again collected by filtration, washed with isopropanol and air dried to give 16.2 g of product.
- a 12.5 g portion of the product is purified further by heating to boiling in methanol (250 mL) and then filtered hot to remove a small amount of a black residue. Upon cooling the filtrate, the product precipitates and is collected by filtration and air dried to yield 6.37 g of purified product having a melting point of 126-128°C. The identity of the compound thus produced is confirmed by mass spectrometry analysis.
- poly-methine compounds provided by this invention are set forth in Tables I and II.
- the compounds may be prepared according to the procedures described above and conform to formulas given for each table.
- compositions comprising at least one of the poly-methine compounds of formula (I) dissolved,
- the poly-methine compounds may be dissolved or dispersed in mineral oil, water-ethanol, hexylene glycol, isopropyl myristate, isopropyl palmitate, poly(alkylene glycols) such as poly(propylene glycol) having a molecular weight of about 400 to 1000 and
- various cosmetic oils such as almond, apricot kernel, avocado, castor, citrus seed, coconut cacao butter (also known as oil of theobroma), corn, cottonseed, egg, jojoba oil lanolin, linseed, mink, olive, palm, peach kernel, peanut, rapeseed, safflower, sesame, shark, soybean, turtle, whale and wheat germ.
- cosmetic oils or other usable vehicles include pharmaceutical grades of synthetic oils derived from natural fatty products (such as those
- Neobee M-5 acetylated monoglycerides (Myvacet)
- liquid paraffin dimethyl phthalate, liquid paraffin, silicones, oleyl alcohols, stabilized castor oil, stabilized castor oil combined with either polyethylene glycol 400 dilaurate or triethanolamine oleate, liquid paraffin combined with stabilized castor oil, stearic acid, wool alcohol, cetyl alcohol, Polawax (a .polyethylene ester of sorbitan), glycerin, sodium citrate, silicon fluid such as MS200 perfume oil, water, N,N-diethyltoluamide, glyceryl
- Polychol 5 an ethoxylated lanolin alcohol preparation
- butylated hydroxytoluene butylated hydroxytoluene
- hydroxyethyl cellulose and carboxymethyl cellulose
- triethanolamines light amber petrolatum, calcium stearate, kaolin, Croda liquid base
- water-soluble vinyl polymers such as
- Carbopol 940 Arlacel, Tween, glycerol monostearate, carbowaxes, methocels, boric acid, ammonyxes, ethoxylated derivatives of lanolin and lanolin components (such as are available from American Cholesterol Products under the name Solulan 16), spermaceti, hexadecyl alcohol, surface active lanolin derivatives (such as are available from American Cholesterol Products, Inc. under the name
- oleate/laurate polyethoxylated high molecular weight amides (such as Ethomid HT/15 from Armour Industrial
- polyoxyethylene ethers of higher aliphatic alcohols such as those available from ICI under the name Brijs
- the like polyoxyethylene ethers of higher aliphatic alcohols
- oil solutions/dispersions may be combined with surface active agents commonly used in cosmetic
- compositions and emulsified with water to obtain either water in oil or, preferably, oil in water emulsions.
- concentration of poly-methine compound in such sunscreen formulations typically will be in the range of 0.1 to 20.0 weight percent and more commonly 2.5 to 10.0 weight percent, based on the total weight of the sunscreen formulation.
- sunscreen formulations according to our invention comprises a polyester having reacted therewith or copolymerized therein the residue of at least one of the poly-methine compounds of formula (I) wherein the poly-methine compound bears at least one and preferably two substituents that are reactive with one of the monomers from which the polyester is derived.
- polyesters which may be used in the
- thermoplastic, crystalline or amorphous polyesters produced by conventional polymerization techniques using one or more diols and one or more dicarboxylic acids or ester-forming equivalents thereof.
- diols diols
- dicarboxylic acids dicarboxylic acids or ester-forming equivalents thereof.
- polyesters have a number average molecular weight of
- the diol components of the described polyesters may be selected from ethylene glycol, propylene glycol, 1,3-propanediol, 1,4-butanediol, 2,2-dimethy1-1,3-propanediol, 1,6-hexanediol, 1,2-, 1,3- and
- 1,4-cyclohexanedimethanol 1,2-, 1,3- and 1,4-cyclohexanediol
- X 8-bis (hydroxymethyl)-tricyclo- [5.5.1.0]-decane wherein X is 3, 4 or 5, and polydiols such as diethylene glycol, triethylene glycol,
- tetraethylene glycol poly(ethylene glycol) having a molecular weight of 200 to 10,000, dipropylene glycol, tripropyleneglycol, tetrapropylene glycol poly(propylene glycol having a molecular weight of 500 to 4,000 and poly(1,4-butanediol), or poly(tetramethylene glycol), having a molecular weight of 800 to 10,000.
- cycloaliphatic diols may be employed as their cis or trans isomers or a mixture thereof.
- the dicarboxylic acid residues of the polyesters may be derived from aliphatic, cycloaliphatic and aromatic dicarboxylic acids such as terephthalic acid, isophthalic acid, 1,2-, 1,3- and 1,4-cyclohexanedicarboxylic acid, succinic acid, glutaric acid, sebacic acid, 1,12-dodecanedioic acid, 2,6-napthalenedicarboxylic acid and the like.
- the dicarboxylic acid or ester-forming equivalents thereof such as anhydrides, acid chlorides or, especially, esters such as the dimethyl, diethyl, dipropyl and bis(2-hydroxyethyl) esters, may be used.
- polyesters comprise at least 50 mole percent terephthalic acid and/or 2,6-naphthalenedicarboxylic acid residues and at least 50 mole percent of diols selected from ethylene glycol, 1,4-butanediol, 1,6-hexanediol, 2,2-dimethyl-1,3-propane-diol, 1,4-cyclohexanedimethanol or a mixture thereof.
- diols selected from ethylene glycol, 1,4-butanediol, 1,6-hexanediol, 2,2-dimethyl-1,3-propane-diol, 1,4-cyclohexanedimethanol or a mixture thereof.
- polymeric sunscreen compositions most preferably
- the concentration of the residue of the polymethine compound of formula (I) in the polyester can be varied substantially depending, for example, on the
- percent based on the weight of the polyester, may be used with a concentration of 5.0 to 30.0 weight percent being preferred.
- copolymerized may be used in the preparation of
- sunscreen compositions by dissolving or dispersing the polyester in a cosmetically-acceptable base. If the polyester is insoluble in the cosmetic base, dispersion and consequent particle size reduction can be accomplished by any of the methods practiced by those skilled in the art, including 3-roll milling using a cosmetic oil or base and surface active agents described hereinabove.
- the polymer compositions provided in accordance with this invention comprise a condensation polymer, e.g., casting, extrusion or molding grade polyester or
- polycarbonate (1) having physically admixed therein one or more of the poly-methine compounds of formula (I) or (2) having reacted therewith or copolymerized therein the residue of a least one of the compounds of formula (I).
- This embodiment of our invention can be used in the manufacture of film, sheet material, packaging material and other shaped articles for protecting various products from UV radiation.
- the casting or molding grade
- polyesters employed in this embodiment of our invention typically have an inherent viscosity of 0.4 to 1.2 and are comprised of at least 50 mole percent terephthalic acid residues, 1,4-cyclohexanedicarboxylic acid residues, 2,6-naphthalenedicarboxylic acid residues or a mixture thereof and at least 50 mole percent of ethylene glycol residues, 1,4-butanediol residues, 1,4-cyclohexanedimethanol residues or a mixture thereof.
- Particularly preferred casting and molding grade polyesters are comprised of 75 to 100 mole percent terephthalic acid residues and 75 to 100 mole percent ethylene glycol residues.
- the sheet material manufactured from the aforesaid polymer compositions may be used in safety glass and eyeware including spectacles and contact lenses to protect the human retina against harmful UV-A and UV-B radiation.
- the surface of such polyester sheet material may be coated with a UV light-cured hard coat for use in safety lens material and UV light-blocking sheeting.
- Typical polycarbonates which may be used in the preparation of the polymer compositions are disclosed in Kirk-Othmer Encyclopedia of Chemical Technology, 3rd Ed., Volume 28, pages 479-494, the disclosure of which is incorporated herein by reference.
- polymeric compositions comprise poly(ethylene
- the concentration of the poly-methine compound or residue thereof in the casting, extrusion or molding grade condensation polymer can be varied substantially
- the concentration of the polymethine compound normally will be in the range of 50 to 1500 ppm (parts by weight per million parts by weight polymer) with the range of 200 to 800 ppm being
- concentrations of 1000 to 10,000 ppm of the poly-methine compound normally will be used.
- concentrations of 1000 to 10,000 ppm of the poly-methine compound normally will be used.
- micron-thick film will contain about 1600 ppm whereas a 51 micron-thick film will contain about 6000 ppm of at least one of the poly-methine compounds or a residue thereof.
- compositions of our invention are further illustrated by the following examples.
- Vitamin E Eastman 6-40
- the mixture is stirred continuously while it cools to 40°C and when the temperature is below 40°C methyl paraben (0.05 g), propyl paraben (0.05 g) and fragrance (0.10 g, Coppertone-type) are added and the mixture is cooled to room temperature. When applied to the skin, the cream has an acceptable smooth texture.
- the flask is equipped with a nitrogen inlet, stirrer, vacuum outlet, and condensing flask.
- the flask and contents are heated at 200°C in a Belmont metal bath for 60 minutes and at 210°C for 75 minutes with a
- the metal bath temperature is increased to 285°C and the pressure is reduced slowly to 4.5 mm Hg.
- the flask and contents are heated at 285°C under
- 381 micron thick film molded from this polymer exhibits a strong absorption peak with a maximum at 357 nm.
- the flask is equipped with a nitrogen inlet, stirrer,
- n-hexane 600 mL is added to facilitate stirring.
- the crystalline polymer is collected by filtration reslurried twice in n-hexane to remove the methyl
- the resulting polyester composition containing the residue of the compound of Example 1 copolymerized therein has an inherent viscosity of 0.184 measured in a 60/40 ratio by weight phenol/tetrachloroethane mixture at a
- the flask is equipped with a nitrogen inlet, stirrer, vacuum outlet, and condensing flask.
- the flask and contents are heated in a Belmont metal bath under a nitrogen sweep at 200°C for 1.75 hours, at 220°C for 1 hour and at 230°C for 1 hour.
- the reaction mixture then is heated at 240°C for about 30 minutes at a reduced pressure of 0.5 to 1.0 mm Hg with a nitrogen stream bleeding into the flask.
- the vacuum is removed and methyl benzoate (125 mL) is added dropwise and stirring is continued at about 240°C for 5-10 minutes as the polymeric composition dissolves.
- the hot solution then is transferred to a 2-L beaker and stirring is continued as the solution cools.
- acetone (1 L) is added to facilitate stirring.
- the crystalline polyester composition then is collected by filtration, reslurried first in acetone (1 L) and then n-hexane (1 L) to remove the methyl benzoate and then dried in a vacuum oven under nitrogen.
- the polymer composition consisting of poly(1,4-tetramethylene 2,6-naphthalenedicarboxylate) having
- the polymeric composition has an inherent viscosity of 0.135 measured in a 60/40 ratio by weight phenol/tetrachloroethane mixture at a
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- Manufacture Of Macromolecular Shaped Articles (AREA)
- Organic Low-Molecular-Weight Compounds And Preparation Thereof (AREA)
- Heterocyclic Carbon Compounds Containing A Hetero Ring Having Nitrogen And Oxygen As The Only Ring Hetero Atoms (AREA)
Abstract
Description
Claims
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| KR1019920700357A KR920703519A (en) | 1989-08-17 | 1990-08-14 | UV absorbing compounds and shading agents and polymeric materials containing such compounds or residues thereof |
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| US07/395,386 US5057594A (en) | 1989-08-17 | 1989-08-17 | Ultraviolet light-absorbing compounds and sunscreen formulations and polymeric materials containing such compounds or residues thereof |
| US395,386 | 1989-08-17 |
Publications (2)
| Publication Number | Publication Date |
|---|---|
| WO1991002715A2 true WO1991002715A2 (en) | 1991-03-07 |
| WO1991002715A3 WO1991002715A3 (en) | 1991-07-11 |
Family
ID=23562819
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| PCT/US1990/004573 Ceased WO1991002715A2 (en) | 1989-08-17 | 1990-08-14 | Ultraviolet light-absorbing compounds and sunscreen formulations and polymeric materials containing such compounds or residues thereof |
Country Status (11)
| Country | Link |
|---|---|
| US (4) | US5057594A (en) |
| EP (2) | EP0486560A1 (en) |
| JP (1) | JP2951399B2 (en) |
| KR (1) | KR920703519A (en) |
| AT (1) | ATE101593T1 (en) |
| AU (1) | AU629774B2 (en) |
| CA (1) | CA2051690C (en) |
| DE (1) | DE69006661T2 (en) |
| DK (1) | DK0413648T3 (en) |
| ES (1) | ES2063320T3 (en) |
| WO (1) | WO1991002715A2 (en) |
Cited By (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| WO1996002587A1 (en) * | 1994-07-18 | 1996-02-01 | Eastman Chemical Company | Copolyesters having improved weatherability |
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| US5057594A (en) * | 1989-08-17 | 1991-10-15 | Eastman Kodak Company | Ultraviolet light-absorbing compounds and sunscreen formulations and polymeric materials containing such compounds or residues thereof |
| US5247023A (en) * | 1991-06-06 | 1993-09-21 | The Pennsylvania Research Corporation | Hydrocarbon polymers containing borane groups at chain ends or in polymer backbone |
| DE69224987T2 (en) * | 1991-06-10 | 1998-07-30 | Eastman Chem Co | LIGHT-ABSORBING POLYMERS |
| US5338539A (en) * | 1992-08-04 | 1994-08-16 | 3V Inc. | Benzofuran derivatives useful as sunscreens |
| US5710046A (en) * | 1994-11-04 | 1998-01-20 | Amoco Corporation | Tagging hydrocarbons for subsequent identification |
| US5723338A (en) * | 1994-11-04 | 1998-03-03 | Amoco Corporation | Tagging hydrocarbons for subsequent identification |
| US5843783A (en) * | 1994-11-04 | 1998-12-01 | Amoco Corporation | Tagging hydrocarbons for subsequent identification |
| WO1998023690A1 (en) | 1996-11-27 | 1998-06-04 | Eastman Chemical Company | Method for preparing light-absorbing polymeric compositions |
| US6001952A (en) * | 1997-06-18 | 1999-12-14 | Eastman Chemical Company | Polyester containing benzylidene having reduced fluorescence |
| US6150494A (en) * | 1998-04-30 | 2000-11-21 | Eastman Chemical Company | Polymers containing optical brightener compounds copolymerized therein and methods of making and using therefor |
| DE19855649A1 (en) * | 1998-12-03 | 2000-06-08 | Basf Ag | Dimeric alpha-alkyl-styrene derivatives as photostable UV filters in cosmetic and pharmaceutical preparations |
| US6162869A (en) * | 1999-06-22 | 2000-12-19 | Eastman Chemical Company | Waterborne acrylic polymers containing polymeric fluorescent compounds |
| US6207740B1 (en) | 1999-07-27 | 2001-03-27 | Milliken & Company | Polymeric methine ultraviolet absorbers |
| DE10013318A1 (en) * | 2000-03-17 | 2001-09-20 | Merck Patent Gmbh | Quinoxaline derivatives are used as photo-stable UV filters in cosmetic or pharmaceutical sunscreens for the hair or skin |
| FR2826365B1 (en) | 2001-06-20 | 2003-09-26 | Oreal | PHOTOPROTECTIVE COSMETIC COMPOSITIONS CONTAINING AMIDE, SULFONAMIDE OR AROMATIC ACRYLONITRILE DERIVATIVES AND NOVEL AMIDE, SULFONAMIDE OR ACRYLONITRILE CARBAMATE DERIVATIVES |
| US6559216B1 (en) | 2001-08-21 | 2003-05-06 | Milliken & Company | Low-color ultraviolet absorber compounds and compositions thereof |
| US7097789B2 (en) * | 2001-08-21 | 2006-08-29 | Milliken & Company | Thermoplastic containers exhibiting excellent protection to various ultraviolet susceptible compounds |
| US6602447B2 (en) | 2001-08-21 | 2003-08-05 | Milliken & Company | Low-color ultraviolet absorbers for high UV wavelength protection applications |
| US6596795B2 (en) | 2001-08-21 | 2003-07-22 | Milliken & Company | Low-color vanillin-based ultraviolet absorbers and methods of making thereof |
| US20030078328A1 (en) * | 2001-08-21 | 2003-04-24 | Mason Mary E. | Low-color resorcinol-based ultraviolet absorbers and methods of making thereof |
| US6835333B2 (en) * | 2002-05-07 | 2004-12-28 | Milliken & Company | Combinations for use as toners in polyesters |
| US6875811B2 (en) | 2002-05-07 | 2005-04-05 | Milliken & Company | Single compound toners for use in polyesters |
| US7094918B2 (en) * | 2003-04-28 | 2006-08-22 | Milliken & Company | Low-color ultraviolet absorbers for thermoplastic and thermoset high UV wavelength protection applications |
| US7877150B2 (en) * | 2004-03-30 | 2011-01-25 | Medtronic, Inc. | Lead electrode for use in an MRI-safe implantable medical device |
| US20050267283A1 (en) * | 2004-05-27 | 2005-12-01 | Weaver Max A | Process for adding nitrogen containing methine light absorbers to poly(ethylene terephthalate) |
| US7541407B2 (en) * | 2004-05-27 | 2009-06-02 | Eastman Chemical Company | Process for adding methine UV light absorbers to PET prepared by direct esterification |
| US7989572B2 (en) * | 2008-01-17 | 2011-08-02 | Eastman Chemical Company | Polyvinyl ultraviolet light absorbers for personal care |
| KR20100135793A (en) * | 2008-03-13 | 2010-12-27 | 바스프 에스이 | Dimer Benzylidene Malonate |
| WO2010056452A2 (en) * | 2008-11-14 | 2010-05-20 | Cytec Technology Corp. | Dimeric cyanoacrylate compounds as red-shifted uv absorbers |
| EP2451427B1 (en) | 2009-07-07 | 2018-04-25 | Basf Se | Uv filter combinations comprising benzylidene malonates |
| CA2874898C (en) | 2012-06-28 | 2020-10-13 | Johnson & Johnson Consumer Companies, Inc. | Sunscreen compositions comprising a chromophore-functionalized polyehter, an anionic emulsifier, and a non-ionic emulsifier |
| US9255180B2 (en) | 2012-06-28 | 2016-02-09 | Johnson & Johnson Consumer Inc. | Ultraviolet radiation absorbing polyethers |
| US10874603B2 (en) | 2014-05-12 | 2020-12-29 | Johnson & Johnson Consumer Inc. | Sunscreen compositions containing a UV-absorbing polyglycerol and a non-UV-absorbing polyglycerol |
| US20190175468A1 (en) | 2016-06-16 | 2019-06-13 | Johnson & Johnson Consumer Inc. | Sunscreen compositions containing a combination of a linear ultraviolet radiation-absorbing polyether and other ultraviolet-screening compounds |
| US10596087B2 (en) | 2016-10-05 | 2020-03-24 | Johnson & Johnson Consumer Inc. | Ultraviolet radiation absorbing polymer composition |
| WO2019009093A1 (en) * | 2017-07-06 | 2019-01-10 | 株式会社日本触媒 | Ethylene compound, ultraviolet absorber and resin composition |
| CN111205203B (en) * | 2019-12-02 | 2021-07-02 | 山西大学 | Benzophenone derivatives containing diphenylcarbamate group and their preparation and application |
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| US3706700A (en) * | 1965-07-23 | 1972-12-19 | Ciba Geigy Corp | Use of bis-methylene malonic acid nitriles in light sensitive materials |
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| US4421929A (en) | 1980-01-21 | 1983-12-20 | The Dow Chemical Company | Tetracarboxylic acids |
| JPS56135455A (en) * | 1980-03-27 | 1981-10-22 | Toagosei Chem Ind Co Ltd | Novel 2-cyanoacrylate and curable composition |
| FR2540380B1 (en) * | 1983-02-03 | 1986-02-07 | Oreal | COSMETIC COMPOSITION FOR PROTECTION AGAINST ULTRAVIOLET RADIATION AND ITS USE THEREFOR |
| US4617374A (en) * | 1985-02-15 | 1986-10-14 | Eastman Kodak Company | UV-absorbing condensation polymeric compositions and products therefrom |
| FR2594332B1 (en) * | 1986-02-14 | 1988-12-16 | Jung Louis | DERIVATIVES OF AMINO-BENZOIC ACIDS, HYDROXY-BENZOIC ACIDS, CINNAMIC ACIDS, UROCANIC ACID AND BENZIMIDAZOLE WITH OR WITHOUT A GROUP OF AMINO ACID ABSORBING UVB AND / OR UVA AND FOR AVOIDING PHOTODERMATOSES, IN MAN, CONSECUTIVE TO THE ADMINISTRATION OF MEDICINES, TO THE USE OF COSMETIC PERFUMES OR PERFUMES |
| US4999186A (en) * | 1986-06-27 | 1991-03-12 | The Procter & Gamble Company | Novel sunscreen agents, sunscreen compositions and methods for preventing sunburn |
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| US5057594A (en) * | 1989-08-17 | 1991-10-15 | Eastman Kodak Company | Ultraviolet light-absorbing compounds and sunscreen formulations and polymeric materials containing such compounds or residues thereof |
-
1989
- 1989-08-17 US US07/395,386 patent/US5057594A/en not_active Expired - Lifetime
-
1990
- 1990-08-14 CA CA002051690A patent/CA2051690C/en not_active Expired - Fee Related
- 1990-08-14 JP JP2511662A patent/JP2951399B2/en not_active Expired - Lifetime
- 1990-08-14 DE DE69006661T patent/DE69006661T2/en not_active Expired - Fee Related
- 1990-08-14 DK DK90420378.3T patent/DK0413648T3/en active
- 1990-08-14 KR KR1019920700357A patent/KR920703519A/en not_active Abandoned
- 1990-08-14 EP EP90912161A patent/EP0486560A1/en active Pending
- 1990-08-14 AU AU61710/90A patent/AU629774B2/en not_active Ceased
- 1990-08-14 ES ES90420378T patent/ES2063320T3/en not_active Expired - Lifetime
- 1990-08-14 WO PCT/US1990/004573 patent/WO1991002715A2/en not_active Ceased
- 1990-08-14 EP EP90420378A patent/EP0413648B1/en not_active Expired - Lifetime
- 1990-08-14 AT AT90420378T patent/ATE101593T1/en not_active IP Right Cessation
-
1992
- 1992-10-30 US US07/968,917 patent/US5302740A/en not_active Expired - Lifetime
- 1992-12-18 US US07/994,069 patent/US5374419A/en not_active Expired - Fee Related
-
1994
- 1994-09-19 US US08/308,863 patent/US5442086A/en not_active Expired - Lifetime
Cited By (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| WO1996002587A1 (en) * | 1994-07-18 | 1996-02-01 | Eastman Chemical Company | Copolyesters having improved weatherability |
Also Published As
| Publication number | Publication date |
|---|---|
| AU6171090A (en) | 1991-04-03 |
| DK0413648T3 (en) | 1994-03-14 |
| JP2951399B2 (en) | 1999-09-20 |
| CA2051690C (en) | 1998-08-11 |
| CA2051690A1 (en) | 1991-02-18 |
| EP0486560A1 (en) | 1992-05-27 |
| DE69006661T2 (en) | 1994-09-15 |
| EP0413648A1 (en) | 1991-02-20 |
| WO1991002715A3 (en) | 1991-07-11 |
| DE69006661D1 (en) | 1994-03-24 |
| US5302740A (en) | 1994-04-12 |
| ATE101593T1 (en) | 1994-03-15 |
| EP0413648B1 (en) | 1994-02-16 |
| US5442086A (en) | 1995-08-15 |
| ES2063320T3 (en) | 1995-01-01 |
| AU629774B2 (en) | 1992-10-08 |
| JPH04507419A (en) | 1992-12-24 |
| US5057594A (en) | 1991-10-15 |
| KR920703519A (en) | 1992-12-18 |
| US5374419A (en) | 1994-12-20 |
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