WO2015176628A1 - 电化学感应试片及其制造方法 - Google Patents
电化学感应试片及其制造方法 Download PDFInfo
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- WO2015176628A1 WO2015176628A1 PCT/CN2015/079158 CN2015079158W WO2015176628A1 WO 2015176628 A1 WO2015176628 A1 WO 2015176628A1 CN 2015079158 W CN2015079158 W CN 2015079158W WO 2015176628 A1 WO2015176628 A1 WO 2015176628A1
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- electrochemical
- substrate
- conductive electrode
- electrochemical sensing
- cover plate
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- G—PHYSICS
- G01—MEASURING; TESTING
- G01N—INVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
- G01N27/00—Investigating or analysing materials by the use of electric, electrochemical, or magnetic means
- G01N27/26—Investigating or analysing materials by the use of electric, electrochemical, or magnetic means by investigating electrochemical variables; by using electrolysis or electrophoresis
- G01N27/28—Electrolytic cell components
- G01N27/30—Electrodes, e.g. test electrodes; Half-cells
- G01N27/307—Disposable laminated or multilayered electrodes
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- G—PHYSICS
- G01—MEASURING; TESTING
- G01N—INVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
- G01N27/00—Investigating or analysing materials by the use of electric, electrochemical, or magnetic means
- G01N27/26—Investigating or analysing materials by the use of electric, electrochemical, or magnetic means by investigating electrochemical variables; by using electrolysis or electrophoresis
- G01N27/28—Electrolytic cell components
- G01N27/30—Electrodes, e.g. test electrodes; Half-cells
- G01N27/327—Biochemical electrodes, e.g. electrical or mechanical details for in vitro measurements
- G01N27/3271—Amperometric enzyme electrodes for analytes in body fluids, e.g. glucose in blood
- G01N27/3272—Test elements therefor, i.e. disposable laminated substrates with electrodes, reagent and channels
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- C—CHEMISTRY; METALLURGY
- C23—COATING METALLIC MATERIAL; COATING MATERIAL WITH METALLIC MATERIAL; CHEMICAL SURFACE TREATMENT; DIFFUSION TREATMENT OF METALLIC MATERIAL; COATING BY VACUUM EVAPORATION, BY SPUTTERING, BY ION IMPLANTATION OR BY CHEMICAL VAPOUR DEPOSITION, IN GENERAL; INHIBITING CORROSION OF METALLIC MATERIAL OR INCRUSTATION IN GENERAL
- C23C—COATING METALLIC MATERIAL; COATING MATERIAL WITH METALLIC MATERIAL; SURFACE TREATMENT OF METALLIC MATERIAL BY DIFFUSION INTO THE SURFACE, BY CHEMICAL CONVERSION OR SUBSTITUTION; COATING BY VACUUM EVAPORATION, BY SPUTTERING, BY ION IMPLANTATION OR BY CHEMICAL VAPOUR DEPOSITION, IN GENERAL
- C23C18/00—Chemical coating by decomposition of either liquid compounds or solutions of the coating forming compounds, without leaving reaction products of surface material in the coating; Contact plating
- C23C18/16—Chemical coating by decomposition of either liquid compounds or solutions of the coating forming compounds, without leaving reaction products of surface material in the coating; Contact plating by reduction or substitution, e.g. electroless plating
- C23C18/1601—Process or apparatus
- C23C18/1633—Process of electroless plating
- C23C18/1635—Composition of the substrate
- C23C18/1639—Substrates other than metallic, e.g. inorganic or organic or non-conductive
- C23C18/1641—Organic substrates, e.g. resin, plastic
Definitions
- the invention relates to an electrochemical induction test piece and a manufacturing method thereof, in particular to a structure and a manufacturing method of a disposable induction test piece.
- a metal electrode is suitable for testing a liquid sample such as blood to test blood sugar, uric acid, cholesterol in the sample through the instrument.
- Disposable inductive test pieces such as concentration or concentration of heavy metals and pesticides in sewage, etc., have gradually developed into widely used and important detection tools.
- the principle of electrochemical detection has been matured in recent years for the detection of various liquid samples. However, it is mainly based on the structure disclosed in the invention patent "Electrochemical Sensing Test Sheet Structure and Process" of Taiwan Case No. I245119.
- the through hole is disposed on the upper hole, and then the at least one solid electrode needs to be fixed in the through hole in an implanted manner, so that the problem of excellent detection efficiency can be achieved by eliminating the need for structural combination of the layers as in the prior art. .
- the inventors of the present invention have conceived and designed an electrochemical sensing test piece and a manufacturing method thereof in order to improve the lack of the prior art, thereby enhancing the industrial use and utilization.
- the object of the present invention is to design an electrochemical sensing test piece having novelties, advancement and industrial utilization, and a manufacturing method thereof, in order to overcome the difficulties of the prior art. .
- the technical means adopted by the present invention is to design an electrochemical sensing test piece comprising: a substrate made of a non-surface-metallized polymer plastic, the substrate being further on one side of the front side
- the recess is provided with at least one inspection slot; at least one conductive electrode portion is a conductive object disposed on the substrate, and a portion thereof extends into the inspection slot; at least one electrochemical sensing portion is correspondingly disposed on a chemical sensing layer of the inspection tank, the electrochemical sensing portion may generate a chemical reaction to generate an electrical signal after contacting the liquid sample to be detected; and a cover plate which is a thin plate covering the substrate corresponding to the The inspection tank is further formed, so that the inspection tank forms a detection opening at the outer end thereof, and the liquid sample to be detected can be dropped from the detection opening, and the cover plate at least shields the conductive electrode portion and the a junction of the electrochemical sensing portion; and a portion of the conductive electrode portion extends out of the cover plate without being
- At least one perforation is further disposed on the substrate adjacent to the inner side of the inspection slot, the number corresponding to the conductive electrode portion, and the conductive electrode portion extends out of the cover plate without being covered by the cover
- the shaded portion of the panel passes through the perforations and thereby extends to the surface at the back of the substrate.
- the perforations are circular holes.
- the substrate is a polymer plastic without pre-doped catalyst.
- the substrate is an elongated plate.
- the inspection groove is a long straight groove structure.
- the electrochemical sensing portion further comprises a hydrophilic layer and a biochemical reaction layer or both Mixed hydrophilic biochemical reaction layer.
- the cover plate is transparent.
- cover plate or the substrate is provided with at least one air hole at the cover of the cover plate.
- the technical means further disclosed by the present invention is to design a method for manufacturing an electrochemical induction test piece, which comprises the following steps: A. A two-material molding step, which simultaneously ejects a non-surface metallized polymer in a mold. Forming a substrate, the substrate further recessing at one side of the front surface with at least one inspection groove, and forming an entity of at least one conductive electrode portion on the substrate by second-shot metallizable polymer plastic a portion extending into the inspection tank; B. a surface metallization step of surface metallizing the conductive electrode portion to have electrical conductivity; C.
- an electrochemical reaction layer coating step Forming an electrochemical sensing portion by coating, dripping or dispersing a chemical reagent in the inspection tank, the electrochemical sensing portion may generate a chemical reaction to generate an electrical signal after contacting the liquid sample to be detected;
- an electrochemical reaction layer a drying step of actively drying the electrochemical sensing portion or passively waiting for the electrochemical sensing portion to dry; and
- E. masking the inspection tank step which will Covering the cover plate on the substrate corresponding to the inspection groove, so that the inspection groove forms a detection opening at the outer end thereof, and the liquid sample to be detected can be dropped from the detection opening; A portion of the conductive electrode portion extends out of the cover plate without being shielded by the cover plate.
- the non-surface metallized polymer plastic is a polymer plastic without pre-doped catalyst.
- the polymer plastic which can be surface-metallized comprises a polymer plastic without a pre-doped catalyst and a polymer plastic pre-doped with a catalyst.
- the metal formed by the surface metallization step is one of copper, nickel, silver, gold, tin, titanium, platinum, palladium, rhodium, ruthenium, iridium, chromium, iron, aluminum, or at least Two metal combinations.
- the electrochemical sensing portion further comprises a hydrophilic layer and a biochemical reaction layer or a hydrophilic biochemical reaction layer mixed with the two.
- the present invention further discloses a technical means for designing a method for manufacturing an electrochemical induction test piece, which comprises the following steps: A. A second injection molding step, which firstly emits a high surface metallization in a first time. Molecular plastic to form an entity of at least one conductive electrode portion, and then to activate the entity of the conductive electrode portion, and to form a second non-surface metallizable polymer on the lower side of the conductive electrode portion to form a second a substrate, the substrate is further recessed at one side of the front surface to be provided with at least one inspection groove, and a solid portion of the conductive electrode portion extends into the inspection groove; B.
- a surface metallization step which is Performing surface metallization of the body of the conductive electrode portion to make it electrically conductive
- the shielding inspection groove step which covers the cover plate on the substrate corresponding to the inspection groove, thereby causing the inspection groove to be
- a detection opening is formed at the outer end, and a liquid sample to be detected may be dropped from the detection opening; and a portion of the conductive electrode portion extends out of the cover without being shielded by the cover.
- the non-surface metallized polymer plastic is a polymer plastic without pre-doped catalyst.
- the surface-metallizable polymer plastic comprises a polymer plastic without pre-doped catalyst and a polymer plastic pre-doped with a catalyst.
- the metal formed by the surface metallization step is one of copper, nickel, silver, gold, tin, titanium, platinum, palladium, rhodium, ruthenium, iridium, chromium, iron, aluminum, or at least Two metal combinations.
- the electrochemical sensing portion further comprises a hydrophilic layer and a biochemical reaction layer or a hydrophilic biochemical reaction layer mixed with the two.
- the electrochemical induction test piece and the manufacturing method thereof of the invention provide a convenient method for designing the process without cumbersome and high precision, and can effectively reduce the manufacturing cost, and further,
- there is no problem in the prior art that it is necessary to implant a conductor inside. Therefore, it is only necessary to dissolve the surface metallized metal to recover the material, and it has high application convenience and the like, and is expected to be popularized and applied.
- Fig. 1 is an external view of an electrochemical induction test piece of the present invention.
- Fig. 2 is an exploded perspective view showing the electrochemical sensing test piece of the present invention.
- Fig. 3 is a perspective view showing the back side of the electrochemical sensing test piece of the present invention.
- FIG. 4 is a flow chart showing a method of fabricating the electrochemical sensing test strip of the present invention.
- Fig. 5 is a view showing an embodiment of a manufacturing flow of a method for producing an electrochemical induction test strip of the present invention.
- Fig. 6 is a view showing an embodiment of a manufacturing flow of a method for producing an electrochemical induction test strip of the present invention.
- Fig. 7 is a view showing an embodiment of a manufacturing flow of a method for producing an electrochemical induction test strip of the present invention.
- Fig. 8 is a view showing an embodiment of a manufacturing flow of a method for producing an electrochemical induction test strip of the present invention.
- Fig. 9 is a view showing an embodiment of a manufacturing flow of a method for producing an electrochemical induction test strip of the present invention.
- Fig. 10 is a flow chart showing the manufacturing method of the electrochemical induction test strip manufacturing method of the present invention.
- Fig. 11 is a view showing an embodiment of a manufacturing flow of a method for producing an electrochemical induction test strip of the present invention.
- Fig. 12 is a view showing an embodiment of a manufacturing flow of a method for producing an electrochemical induction test strip of the present invention.
- the present invention provides an electrochemical sensing test strip and a manufacturing method thereof.
- the electrochemical sensing test strip may include: a substrate 10 and at least one conductive electrode. The portion 20, the at least one electrochemical sensing portion 30, and the cover plate 40.
- the substrate 10 described above may be an elongated plate made of a polymer plastic that is not surface-metallized.
- Surface metalization generally refers to a method of forming a metal layer on a surface of a material such as electroplating or electroless plating, for example, PC or the like.
- the polymer material of the catalyst is pre-doped, and further recessed at one side of the front surface is provided with at least one inspection groove 11 which may be a long straight groove structure and adjacent to the inspection groove on the substrate 10 Further, at least one of the through holes 12 is provided at the inner side of the hole 11, and the through hole 12 may be a circular hole.
- the conductive electrode portion 20 is a conductive member disposed on the substrate 10, the number of which corresponds to the through hole 12, and a portion thereof extends into the inspection groove 11 and another portion thereof passes through the through hole 12, It extends to the surface at the back of the substrate 10 for transmission of electrical signals.
- the electrochemical sensing portion 30 is a chemical sensing layer disposed in the inspection tank 11, which can react with the liquid sample to be detected to generate a chemical reaction to generate an electrical signal, and the electrochemical sensing portion 30 further comprises a hydrophilic layer and a biochemical reaction.
- the cover plate 40 is a thin plate piece, which can be transparent, and covers the substrate 10 corresponding to the inspection groove 11, so that the inspection groove 11 forms a detection opening at the outer end thereof, and can be dripped from the detection opening.
- the liquid sample to be inspected is placed, and the cover plate 40 is at least shielded at the intersection of the conductive electrode portion 20 and the electrochemical sensing portion 30, and at least one air hole is provided on the cover plate 40 or on the substrate 10 covered by the cover plate 40. 41; and for convenience of use, an auxiliary indicator such as an observation window and a mark can be printed on the cover 40.
- the present invention further discloses a method for manufacturing an electrochemical induction test piece, which is used for manufacturing the aforementioned electrochemical induction test piece, in a preferred embodiment. The following steps can be included:
- a two-material molding step is to simultaneously form a non-surface-metallized polymer plastic (for example, PC) in the mold to form the substrate 10 (please further cooperate with reference to FIG. 5), and to eject the surface at a second time.
- a metallized polymer plastic for example, ABS
- surface metallization step is to surface metalize the body of the conductive electrode portion 20, and the metal formed may be copper, nickel, silver, gold, tin, titanium, One or a combination of at least two metals of platinum, palladium, rhodium, ruthenium, osmium, chromium, iron, aluminum, and the like.
- the foregoing C. electrochemical reaction layer coating step is to form the electrochemical sensing portion 30 by coating, dropping or dispersing a chemical reagent in the inspection tank 11 , and the electrochemical sensing portion 30 can further a hydrophilic biochemical reaction layer containing a hydrophilic layer and a biochemical reaction layer or a mixture of the two Layer structure.
- the aforementioned D. electrochemical reaction layer drying step comprises an active dry electrochemical sensing portion 30 or a passive waiting electrochemical sensing portion 30 for drying.
- the E. masking inspection slot step covers the cover plate 40 on the substrate 10 corresponding to the inspection slot 11, so that the inspection slot 11 forms a detection opening at the outer end thereof.
- the liquid sample to be detected is dropped into the detection opening, and the cover 40 is at least shielded at the intersection of the conductive electrode portion 20 and the electrochemical sensing portion 30.
- FIG. 10 wherein the present invention further discloses a method for manufacturing an electrochemical induction test piece, which is used for manufacturing the aforementioned electrochemical induction test piece, in a
- a preferred embodiment may include the following steps:
- secondary injection molding step firstly ejects a surface-metallizable polymer plastic (for example, ABS) to form an entity of the conductive electrode portion 20, and then the conductive electrode.
- the entity of the portion 20 is catalytically catalyzed; further, as shown in FIG. 12, the substrate 10 is formed on the lower side of the conductive electrode portion 20 by ejecting a polymer plastic (for example, PC) which is not surface-metallizable for the second time.
- a surface-metallizable polymer plastic for example, ABS
- PC polymer plastic
- the foregoing B. surface metallization step performs surface metallization of the body of the conductive electrode portion 20, and the metal formed may be copper, nickel, silver, gold, tin, titanium, platinum, One of a metal such as palladium, rhodium, ruthenium, iridium, chromium, iron, aluminum, or a combination of at least two of them.
- electrochemical reaction layer coating step is performed by coating, dropping or dispersing a chemical reagent in the inspection tank 11 to form the electrochemical sensing portion 30, and the electrochemical sensing portion 30 may further comprise The hydrophilic layer and the biochemical reaction layer or a hydrophilic biochemical reaction layer mixed with the two layers.
- the aforementioned D. electrochemical reaction layer drying step comprises an active dry electrochemical sensing portion 30 or a passive waiting electrochemical sensing portion 30 for drying.
- the E. masking inspection slot step covers the cover plate 40 on the substrate 10 corresponding to the inspection slot 11, so that the inspection slot 11 forms a detection opening at the outer end thereof.
- the liquid sample to be detected is dropped into the detection opening, and the cover 40 is at least shielded at the intersection of the conductive electrode portion 20 and the electrochemical sensing portion 30.
- the inductive change in the design of the electrochemical sensing test piece and the manufacturing method thereof of the present invention provides a convenient way of making the process without complicated and high precision of production, and can effectively reduce the manufacturing cost.
- There is no problem in the prior art that it is necessary to implant a conductor inside. Therefore, it is only necessary to dissolve the metal after surface metallization to recover the material, and it has high application convenience and the like, and is expected to be popularized and applied. What can not be achieved by the prior art, so that the beneficial effects can be seen.
- the present invention has achieved the desired effect under the breakthrough of the prior art, and is not easily conceivable by those skilled in the art, and has the progressiveness and practicability, and has been patent-compliant. Apply for the requirements, so file a patent application with a view to obtaining corresponding protection.
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Abstract
Description
Claims (20)
- 一种电化学感应试片,其特征在于,所述电化学感应试片包含:基板,其为不可表面金属化的高分子塑料所制,所述基板在正面上的一侧处进一步凹入设有至少一个检验槽;至少一个导电电极部,其为设于所述基板上的导电物件,且所述导电电极部部分延伸进入所述检验槽之中;至少一个电化学感应部,其为对应设于所述检验槽的化学感应层,所述电化学感应部与待检测的液态检体接触后产生化学反应产生电信号;以及盖板,其为薄板片,所述盖板覆盖于所述基板上对应于所述检验槽上,进而使所述检验槽在其外侧端处形成检测开口,自所述检测开口处滴入待检测的液态检体,且所述盖板至少遮蔽在所述导电电极部与所述电化学感应部的交接处;且其中所述导电电极部的一部分延伸出所述盖板而未受所述盖板的遮蔽。
- 如权利要求1所述的电化学感应试片,其特征在于,在所述基板上邻近于所述检验槽内侧处进一步设有至少一个穿孔,其数量对应于所述导电电极部,且所述导电电极部延伸出所述盖板而未受所述盖板的遮蔽的部分穿过所述穿孔,进而延伸至所述基板的背面处的表面上。
- 如权利要求2所述的电化学感应试片,其特征在于,所述穿孔为圆形孔。
- 如权利要求1所述的电化学感应试片,其特征在于,所述基板为无预先掺杂触媒的高分子塑料。
- 如权利要求1所述的电化学感应试片,其特征在于,所述基板为长形板片。
- 如权利要求1所述的电化学感应试片,其特征在于,所述检验槽为长直凹槽结构。
- 如权利要求1所述的电化学感应试片,其特征在于,所述电化学感应部进一步包含亲水层与生化反应层或者是其两者混合的亲水生化反应层。
- 如权利要求1所述的电化学感应试片,其特征在于,所述盖板为透明的。
- 如权利要求1所述的电化学感应试片,其特征在于,所述盖板上或者是所述基板上受所述盖板覆盖处设有至少一个气孔。
- 如权利要求1所述的电化学感应试片,其特征在于,所述导电电极部为在表面电镀或化学镀有一层导电金属的高分子塑料,所述高分子塑料包含无预先掺杂触媒的高分子塑料以及预先掺杂触媒的高分子塑料。
- 一种电化学感应试片的制造方法,其特征在于,所述电化学感应试片的制造方法包含下列步骤:A.双料成型步骤,其为同时在模具中一次射出不可表面金属化的高分子塑料以形成基板,所述基板在正面上的一侧处进一步凹入设有至少一个检验槽,并且二次射出可表面金属化的高分子塑料在所述基板上形成至少一个导电电极部的实体,其部分延伸进入所述检验槽之中;B.表面金属化步骤,其为将所述导电电极部的实体进行表面金属化,以使其具备导电性;C.电化反应层涂布步骤,其通过涂覆、滴落或散布化学试剂在所述检验槽以形成电化学感应部,所述电化学感应部与待检测的液态检体接触后产生化学反应产生电信号;D.电化反应层干燥步骤,其为主动式干燥所述电化学感应部或者是被动式等待所述电化学感应部干燥;以及E.遮蔽检验槽步骤,其为将盖板覆盖于所述基板上对应于所述检验槽上,进而使所述检验槽在其外侧端处形成检测开口,自所述检测开口滴入待检测的液态检体;且所述导电电极部的一部分延伸出所述盖板而未受所述盖板的遮蔽。
- 如权利要求11所述的电化学感应试片的制造方法,其特征在于,所述不可表面金属化的高分子塑料为无预先掺杂触媒的高分子塑料。
- 如权利要求11所述的电化学感应试片的制造方法,其特征在于,所述可表面金属化的高分子塑料包含无预先掺杂触媒的高分子塑料以及预先掺杂触媒的高分子塑料。
- 如权利要求11所述的电化学感应试片的制造方法,其特征在于,所述B.表面金属化步骤所形成的金属为铜、镍、银、金、锡、钛、白金、钯、铑、钌、铱、铬、铁、铝等金属中的一种或者至少两种的金属组合。
- 如权利要求11所述的电化学感应试片的制造方法,其特征在于,所述电化学感应部进一步包含亲水层与生化反应层或者是其两者混合的亲水生化反应层。
- 一种电化学感应试片的制造方法,其特征在于,其包含下列步骤:A.二次射出成型步骤,其为首先以第一次射出可表面金属化的高分子塑料以形成至少一个导电电极部的实体,而后对所述导电电极部的实体进行触媒化,并且以第二次射出不可表面金属化的高分子塑料在所述导电电极部的下侧形成基板,所述基板在正面上的一侧处进一步凹入设有至少一个检验槽,而所述导电电极部的实体的部分延伸进入所述检验槽之中;B.表面金属化步骤,其为将所述导电电极部的实体进行表面金属化,以使其具备导电性;C.电化反应层涂布步骤,其通过涂覆、滴落或散布化学试剂在所述检验槽以形成电化学感应部,所述电化学感应部与待检测的液态检体接触后产生化学反应产生电信号;D.电化反应层干燥步骤,其为主动式干燥所述电化学感应部或者是被动式等待所述电化学感应部干燥;以及E.遮蔽检验槽步骤,其将盖板覆盖于所述基板上对应于所述检验槽上,进而使所述检验槽在其外侧端处形成检测开口,而自所述检测开口滴入待检测的液态检体;且所述导电电极部的一部分延伸出所述盖板而未受所述盖板的 遮蔽。
- 如权利要求16所述的电化学感应试片的制造方法,其特征在于,所述不可表面金属化的高分子塑料为无预先掺杂触媒的高分子塑料。
- 如权利要求16所述的电化学感应试片的制造方法,其特征在于,所述可表面金属化的高分子塑料包含无预先掺杂触媒的高分子塑料以及预先掺杂触媒的高分子塑料。
- 如权利要求16所述的电化学感应试片的制造方法,其特征在于,所述B.表面金属化步骤所形成的金属为铜、镍、银、金、锡、钛、白金、钯、铑、钌、铱、铬、铁、铝等金属中的一种或者至少两种的金属组合。
- 如权利要求16所述的电化学感应试片的制造方法,其特征在于,所述电化学感应部进一步包含亲水层与生化反应层或者是其两者混合的亲水生化反应层。
Priority Applications (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| EP15796328.1A EP3147657A4 (en) | 2014-05-20 | 2015-05-18 | Electrochemical sensitive test piece and manufacturing method therefor |
| JP2016568870A JP2017516995A (ja) | 2014-05-20 | 2015-05-18 | 電気化学試験片及びその製造方法 |
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| CN201410213510.7 | 2014-05-20 | ||
| CN201410213510.7A CN105092662B (zh) | 2014-05-20 | 2014-05-20 | 电化学感应试片及其制造方法 |
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| WO2015176628A1 true WO2015176628A1 (zh) | 2015-11-26 |
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| US (1) | US20150338366A1 (zh) |
| EP (1) | EP3147657A4 (zh) |
| JP (1) | JP2017516995A (zh) |
| CN (1) | CN105092662B (zh) |
| WO (1) | WO2015176628A1 (zh) |
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| Publication number | Priority date | Publication date | Assignee | Title |
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| CN105277597B (zh) * | 2014-07-17 | 2017-09-15 | 光宏精密股份有限公司 | 电化学感测试片导电件设置方法 |
| US9933386B2 (en) * | 2015-06-29 | 2018-04-03 | Kuang Hong Precision Co., Ltd. | Setting method for conductive object of electrochemical test strip |
| CN107271504B (zh) * | 2016-04-06 | 2020-08-14 | 江振丰 | 电化学感测试片导电件设置方法 |
| CN107037208B (zh) * | 2016-11-18 | 2019-03-29 | 百奥森(江苏)食品安全科技有限公司 | 一种多功能荧光免疫层析快速定量检测卡 |
| CN109557156A (zh) * | 2018-08-31 | 2019-04-02 | 国竤工业有限公司 | 微流控电化学生物传感器及其制作方法 |
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Also Published As
| Publication number | Publication date |
|---|---|
| CN105092662B (zh) | 2019-01-22 |
| CN105092662A (zh) | 2015-11-25 |
| EP3147657A4 (en) | 2017-11-01 |
| US20150338366A1 (en) | 2015-11-26 |
| EP3147657A1 (en) | 2017-03-29 |
| JP2017516995A (ja) | 2017-06-22 |
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