JPS5996665A - Electrolyte for lithium battery - Google Patents

Electrolyte for lithium battery

Info

Publication number
JPS5996665A
JPS5996665A JP57206572A JP20657282A JPS5996665A JP S5996665 A JPS5996665 A JP S5996665A JP 57206572 A JP57206572 A JP 57206572A JP 20657282 A JP20657282 A JP 20657282A JP S5996665 A JPS5996665 A JP S5996665A
Authority
JP
Japan
Prior art keywords
lithium
jethoxyethane
lithium battery
solvent
mixed
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
JP57206572A
Other languages
Japanese (ja)
Other versions
JPH0351068B2 (en
Inventor
Shinichi Tobishima
真一 鳶島
Akihiko Yamaji
昭彦 山路
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
NTT Inc
Original Assignee
Nippon Telegraph and Telephone Corp
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Nippon Telegraph and Telephone Corp filed Critical Nippon Telegraph and Telephone Corp
Priority to JP57206572A priority Critical patent/JPS5996665A/en
Publication of JPS5996665A publication Critical patent/JPS5996665A/en
Publication of JPH0351068B2 publication Critical patent/JPH0351068B2/ja
Granted legal-status Critical Current

Links

Classifications

    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01MPROCESSES OR MEANS, e.g. BATTERIES, FOR THE DIRECT CONVERSION OF CHEMICAL ENERGY INTO ELECTRICAL ENERGY
    • H01M10/00Secondary cells; Manufacture thereof
    • H01M10/05Accumulators with non-aqueous electrolyte
    • YGENERAL 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
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E60/00Enabling technologies; Technologies with a potential or indirect contribution to GHG emissions mitigation
    • Y02E60/10Energy storage using batteries

Landscapes

  • Engineering & Computer Science (AREA)
  • Manufacturing & Machinery (AREA)
  • Chemical & Material Sciences (AREA)
  • Chemical Kinetics & Catalysis (AREA)
  • Electrochemistry (AREA)
  • General Chemical & Material Sciences (AREA)
  • Primary Cells (AREA)
  • Secondary Cells (AREA)

Abstract

(57)【要約】本公報は電子出願前の出願データであるた
め要約のデータは記録されません。
(57) [Summary] This bulletin contains application data before electronic filing, so abstract data is not recorded.

Description

【発明の詳細な説明】 丸明の許創な1i51.L!J:1 本発明は、リチウム′電池にハ」いる電、イ故に閥する
ものである。
[Detailed description of the invention] Marumei's original 1i51. L! J:1 The present invention focuses on the electricity contained in lithium batteries.

リチウノ・を負懐ン占ゴ必負として井」いる゛屯l也V
ま、小盈e市エネルギ密区紮mする゛電池として研究さ
れているが、その二次化が大きな四屯点となっている。
I'm looking forward to seeing Richiuno as a must-see.
Well, it is being researched as a battery that can be used in the energy-dense area of Xiaoying City, but its secondary use is a major problem.

二次化が可能な正協活物質として、V20B、Ve O
□!号の余病酸化物、Ti5z、VS*等の屑状化合物
が、Liとの間でトポケミカルな反応をする化8吻とし
て知られており 、机hfでチタン、ジルコニウム、ハ
ンニウム、ニオビウム、タンタル、バナジウムの硫化物
、セレン化物、テルル化物を用いた′電池(米国瞥計第
4,089,052号明細刊参照)等が開示されている
As a Seikyo active material that can be secondaryized, V20B, Ve O
□! Scrap compounds such as No. oxide, Ti5z, and VS* are known as chemical compounds that undergo topochemical reactions with Li. A battery using vanadium sulfide, selenide, or telluride (see specification of U.S. Beammeter No. 4,089,052) has been disclosed.

しかしながら、このような二次電池用正恰活物負の研究
に比して、Li焼の光放電有性に10・」する研究は光
分と(lよいえず、Li二次電池失視のためには、元放
′−効半及びサイクル寿都専の冗放′屯特性の艮灯な屯
厚ト液の探査が皿太な間也となっている。Li 4メの
光放屯効幕を同上させる試みとしてrl L i Ct
O4/プロピレンカーボネイトにニトロメタンA 50
2=の′IIJ8カ11 =tJを力lえる試み(El
ectr。
However, compared to such positive and negative research on active materials for secondary batteries, research that investigates the photodischarge properties of Li-fired materials has been found to be 10% of the time. In order to achieve this, the exploration of the light emission characteristics of the original radiation effect and the cycle Jutsu-sen is a major step.The light radiation effect of Li 4 rl L i Ct as an attempt to make the curtain ditto
O4/propylene carbonate with nitromethane A 50
2 = 'IIJ8 Ka11 = Attempt to strengthen tJ (El
ectr.

chimica、Acta、vol、22. 第75J
it=83声(1977) :]寺が行なわlしている
が必すしも光分とribえす、ざらにイザ・註の倹れた
リチウムニ仄喝池刀:l亀n十ン牧が求められている。
chimica, Acta, vol, 22. 75th J
it = 83 voices (1977): ] The temple is doing it, but it is also necessary to rib it with light, and it is a waste of lithium, and it is a sword, and it is called for. ing.

本究明は0、このような現状に亦みなされたものであ(
)、その目的は畳重率が局くかつLi幌の充放′電荷性
の優れたリチウム−次及び二次′屯?巴用非水屯屏孜を
仇供することにある。
This research has been neglected due to the current situation (
), its purpose is to produce lithium secondary and secondary lithium ions with a localized folding ratio and excellent charging and discharging properties. The purpose is to avenge Tomoe's non-suishitun-bingei.

したがって、本丸甲」によるリチウ1allk用非水′
区屏ン吹はリチウムj益を;M 4’、:’、、浴媒に
溶剛、させた非水屯耐牧においで、前a[シ非水′畦麻
敢の有機ン谷媒として1.2−ジェトキシエタンと、前
に+:1.2−ジェトキシエタンより高話藏率の非プロ
トンt?i+、住γ谷媒との混合溶媒を・用いた俗を籍
飲とするものである。
Therefore, the non-water '
Gu Ping blowing lithium J benefit; 1.2-jethoxyethane and before +: aproton t with a higher conversion rate than 1.2-jethoxyethane? It is commonly used as a mixed solvent with i+ and Sumiya medium.

本究明によれは、萌似浴媒として、1.2−ジによシ々
t′−牟が動く、かつLi襖の充放も翁憔の優秀なリチ
ウム二次屯他用非水゛砒屏1wを逼り(することができ
る。
According to the present study, as a similar bath medium, 1.2-di and t'-particles move more and more, and the charging of Li sliding doors is also possible with the excellent lithium secondary tank and other non-aqueous baths. It is possible to read 1w of folding pages.

不発閃を史に卸しく説明する。Explaining the misfires in history.

リチウム二次電池は、リチウムるjt急γ占1f寅とし
、Li イオンに刈し、゛電気化学的に重性で、かつL
i  イオンと可逆的な′喝気化字反応を行なう吻買を
正べη活吻買とし、リチウム墳全肩°6す溶媒に溶解さ
せ7迦非水゛F4J、汚トイ′kを用いたものであるか
、このリチウムニ(7CI4.ilJ川の/rj′1・
72浴ハとして、本究明においては、1.2−ジェトキ
シエタンと、1祇rjt歳の畳重率を同上させるだめに
は、Liから浴a・々への≠ や府媒禾中のLi鴻がp珪1゛触し易く、かつLi  
イオンの7シ動(住が入きい争が心安であると2)えら
れる。1,2−ジェトキシエタンはLiへの/X応性が
低い午がゾロられているが、その誘′颯皐は低く(5,
C25’C)年δ玉ではその特注は必ずしも゛光分では
ない。この独な安水を、1,2−ジェトキシエタンと1
.2−ジトキエタンよシ尚妨屯牟の非プロトン憾註浴奴
との混合溶媒を用いた岨屏液ン1に用する十によシ胸た
づ一争が勘侍される。
Lithium secondary batteries are made of lithium, which has a high concentration of 1f, and is made into Li ions, which are electrochemically heavy and
1. A reversible chemical reaction with ions that undergoes a reversible vaporization reaction is used as an active chemical, which is dissolved in a solvent containing lithium ions and used in a non-aqueous solution. Is this lithium ni (7CI4.ilJ river/rj′1・
As for 72 baths, in this investigation, in order to make the convolution rate of 1,2-jetoxyethane and 1 yrjt the same as above, it is necessary to change the ratio from Li to baths a and ≠ and the Li hong in the middle of the government. Easy to touch and Li
Aeon's 7-movement (2) is said to be a safe place to live and fight. Although 1,2-jethoxyethane has low /X reactivity to Li, its attraction is low (5,
C25'C) In the year δ ball, the custom order is not necessarily ゛light minute. This unique ammonium water is mixed with 1,2-jethoxyethane and 1
.. 2- Ditokiethane and the aprotic aprotons used in the liquid mixture using mixed solvents are considered to be a serious problem.

本96鴫による祇hf撤のM↑μ市銖は0り運のように
、1.2−ジェトキシエタンと、l、2−ジェトキシエ
タンより市誘−率の非プロトン性極性溶媒との混合溶媒
であるが、これらに、溶解される溶ηは従来この4□□
□0屯亀に用いられる浴質を目出に用いることができる
。たとえば、LiC1Ch +LiBF、。
As expected, M↑μ is a mixed solvent of 1,2-jethoxyethane and an aprotic polar solvent with a lower dielectric constant than l,2-jethoxyethane. However, the molten η dissolved in these is conventionally 4□□
□The bath quality used for 0tunkame can be used for mede. For example, LiC1Ch +LiBF.

LiAsFa 、LiPFg、LiAtC4+寺の魚1
候坂及びCF”s SOm Lit CFs COOL
i  等の有板塩を用いることができる。
LiAsFa, LiPFg, LiAtC4 + temple fish 1
Kourizaka and CF”s SOm Lit CFs COOL
A plate salt such as i can be used.

これらの溶%は前記壱伝溶婬に、好ましくは0.5〜2
.5  溶庁[される。溶解する溶″員が0,5N未渦
であると、充放Iv、萄性が着しく低下し、2.5Nを
超えると面質は溶層しないからである。
The melting percentage of these is preferably 0.5 to 2
.. 5. To be dissolved. This is because if the melt member to be dissolved is 0.5N without vortex, the charging/discharging Iv and the viscosity will be severely reduced, and if it exceeds 2.5N, the surface quality will not become a molten layer.

1.2−ジエトキシエタ/と混合する1、2−ジェトキ
シエタンよシ尚誘電半の非プロトン4@3性陪媒は、従
来この極の′電池に用いられる尚誘亀率浴媒を目出に井
」いる事ができる。たとえは、)゛ロピレンカーボイ・
イト、r−5?’テロラクトン、ジメチルスルホキシド
、スルホラン、N、N−ジメチルホルムアミド、N、N
−ジメチルアセトアミド寺の中から遇ばれたl種以上の
溶媒を用いる事ができる。
1,2-diethoxyethane is mixed with 1,2-diethoxyethane, which is a semi-dielectric aprotic 4@3 carrier medium. ” You can be there. The analogy is)
Ito, r-5? 'Telolactone, dimethyl sulfoxide, sulfolane, N,N-dimethylformamide, N,N
- Dimethylacetamide It is possible to use more than one solvent selected from the group.

1.2−ジェトキシエタン及び1.2−ジェトキシエタ
ンより尚妨屯半の非プロトン側性省媒の混合比は、1.
fましくは1:9〜9:11 岐も好ましくば5 : 
5 戸14畝でめる。1:9以下の九・d比でるると\
1f−4Jイiをで昆合した息味が7カ、くなシ、単独
糸の充放曳・;1f−1+(tこガつさ、充放′醸特性
が悠化するからである。
The mixing ratio of 1.2-jetoxyethane and the aproton-saving medium that is less than 1.2-jetoxyethane is 1.
Preferably 1:9 to 9:11 and preferably 5:
5. House with 14 ridges. If you get a 9.d ratio of 1:9 or less,
1f-4Ji is combined with 7 colors, kunashi, and single thread's charge and release. .

以下、本究明の火、殉汐りを説明する。Below, I will explain the fire of this investigation and my martyrdom.

美加1・し111 yt獣をイ′I−用蜆、λ4句・吃(fc L i  
を参j1(て也・1其としてLiを用いた屯(民金肘1
み、Pt4史上にLi を析出させることにより、Li
 rl!il<の尤放兎崎注を副廻した。
Mika 1 111
Refer to j1 (Teya, 1).
By precipitating Li in Pt4 history, Li
rl! I made a copy of il <'s Yuho Tozaki Note.

電層7e−Vこは、INLiBFaを1.2−ジェトキ
シエタン(以下、DEOEと1も記する)とプロピレン
刀−ボネイト(以下、PCとU杓記する)のl=1体4
頁比1比台7+J訊Kt谷消6せたものを用いた。
The electric layer 7e-V is formed by forming INLiBFa into l=1 body of 1,2-jetoxyethane (hereinafter also referred to as DEOE) and propylene carbonate (hereinafter referred to as PC) 4
I used a page ratio of 1, 7 + J, Kt, and 6.

この祇屏数の尋電年id4.7XI01Ω−1m−1で
あり、I NL iBF’4 /P C単独糸の寺厄半
及びlNLi1lF、/DEOm早独ホの7#、4 半
でりる3、6刈O−8Ω−’ !−”及び゛1.2刈0
−8Ω−7”よI)G]かツタ。
This number of folding numbers is id 4.7 , 6 cut O-8Ω-'! -” and “1.2 moi 0
-8Ω-7” yoI)G] or ivy.

測矩は、まず5mA/ffl の定′亀訛で1分i’i
、4j、 Pt幌上にLiを析出させ光電した浚、5m
A/cdの麓KmCでpt+x上に析出したLi+ イ
オンとして放−するサイクル試飲をイ:rなった。充放
電動¥は、pt物の電位変化よシ釆め、Pt惨上に析出
したLiをLi+ イオンとして放電させるのに太した
′喝気燻とPt(sj<上にLiを析出させるだめxJ
Aした也気賞との比から詩、出した。
First, measure the rectangle at 5 mA/ffl for 1 minute.
, 4j, photoelectrically deposited Li on a Pt canopy, 5 m long.
A cycle sample was conducted to release Li+ ions precipitated on pt+x at KmC at the foot of A/CD. The charging/discharging electric current is determined by considering the potential change of the Pt material, and using a thick swell to discharge the Li deposited on the Pt surface as Li+ ions and Pt (sj
I submitted a poem based on the comparison with the Yaki Award which I received an A.

81図は、充放岨幼キとサイクル数の図1・床を示す図
であシ、図中のaは上配磁脚准を用い)c場合であり、
b及びCは、ぞれぞれ、1NLiBFn/PC及びlN
LiBF4/DEO玖 単6ズ糸の′曳Ht故を用いた
徊合の充放眠符件2参考クリとして示した0第1図から
千」るように、牢j虫糸(b、c)に比べて人混金糸(
a)は明らかに、充放亀符゛匡は1ら上している〇実施
例 一屏畝として、2 NL i CLOaケPCとDEO
Eの体積7昆会比1:9の混合電媒に添附さぜたものを
用いた以タトは、笑施丙1と1−=J休にして、Liの
単独糸の2h屯卓である4、3X10−’Ω−1d1及
び3 、3 X 10−8O−”tin−” よシ商か
った。第2図は充放′屯//JJ牟とサイクルはの1力
恍を示す凶であり、図中の(a)は本発明の2 NL 
i CtO< /P C/DEOE (体4A混合比l
:9)金奄屏散として用いた嶺会であシ、図中の(b)
及び(C)は参考t・1」として、各々、INLiCt
04/PC及びI NL iCLot /DEOE率犯
溶媒糸゛岨肘θを用いたへ□1台のLi似の光放電イジ
注を示したものである。第2凶から判る様に、単斜;h
 (b 。
Figure 81 is a diagram showing Figure 1 and the floor of the charging and discharging force and the number of cycles.
b and C are 1NLiBFn/PC and 1N, respectively
LiBF4/DEO 绖 As shown in Figure 1, the prison thread (b, c) is shown as a reference. Compared to the human mixed thread (
Obviously, a) is higher than 1. As an example, 2 NL i CLOa ke PC and DEO
This is a 2h tunshu of a single thread of Li with a volume of 7 of E added to a mixed electric medium with a ratio of 1:9, with 1 and 1-=J. 4,3X10-'Ω-1d1 and 3,3X10-8O-"tin-" worked well. Figure 2 shows the power of charge and release//JJ and the cycle, and (a) in the figure is the 2NL of the present invention.
i CtO< /P C/DEOE (body 4A mixing ratio l
:9) Ashi Minekai used as a kinjuban, (b) in the figure
and (C) are reference t・1'', respectively, INLiCt
04/PC and INL iCLot/DEOE A Li-like photodischarge model using a solvent thread θ is shown. As you can see from the second sin, monoclinic; h
(b.

C)に比べて、?■、′一台ホ(a)は明らかに光取、
。!i守性は1ijj上している。
Compared to C)? ■、'Ichitaiho (a) is clearly Mitsutori,
. ! i-observance has increased by 1ijj.

夫yiSl クリ3 砥騨欣として、2NLiCtO4をpcとDEOEの体
積混合比1:1の混せ俗妹に電解させたものを用いた以
外は、実施ルす1と同様にしてLiの充放亀将牡fc曲
j別した。
Li charging and discharging mechanism was carried out in the same manner as in Example 1, except that 2N LiCtO4 was mixed with PC and DEOE at a volumetric mixing ratio of 1:1 and electrolyzed as the tod. Masao fc song j is different.

この′−pp+奴の婢喝牢は7.5X10−”Ω−1副
−1であシ、2 NL i Ctea /P C単独系
及び2NLi CLO4/DEOE  435J=Om
m4=でhる4、3xlO−” Ω−”crn′″1及
び311.・3X10.−”Ω−1百−1第3図は、光
放電効率とサイクル飲の閃称全示す図であシ、図中の(
a)は本発明の2 N L i CtOa /PC/D
EOE  (+4N混合比1:l)を電m液として用い
たく合であシ、図中の(b)及び(c)は、参考例とし
て各々、I NL I Ctri /P C及びI N
L i Cl−0</DEOE単独溶媒系奄)寸手液を
用いた場合のLi極の充放′−特性を示したものである
This '-pp+ guy's blackmail prison is 7.5X10-''Ω-1 sub-1, 2NLi Ctea /PC single system and 2NLi CLO4/DEOE 435J=Om
m4 = h4, 3xlO-"Ω-"crn'"1 and 311.・3 (in the figure)
a) is 2 N L i CtOa /PC/D of the present invention
When EOE (+4N mixing ratio 1:l) is used as the electrolytic liquid, (b) and (c) in the figure are reference examples, respectively.
This figure shows the charging and discharging characteristics of the Li electrode when a liquid containing LiCl-0</DEOE as a single solvent was used.

第3図から判る様に、単独系(b、c)に比べて混合糸
(a)は明らかに光放電%社は向上している。
As can be seen from FIG. 3, the photodischarge percentage of the mixed yarn (a) is clearly improved compared to the single yarns (b, c).

以上の説明から明らかなように本発明によればリチウム
塩を有戦溶媒に電解させた非水寛ルト液においてM桜電
媒として1.2−ジェトキシエタンと1,2−ジェトキ
シエタンよ#)尚誘電率の電媒との混合6媒を用いる事
によシ、寺奄半も尚く、かつLi極の光放電特注が優れ
たリテウムニ次篭池用非水篭片r液を提・洪する弗がで
きる。
As is clear from the above explanation, according to the present invention, 1,2-jethoxyethane and 1,2-jethoxyethane are used as the M electrolyte in a non-hydrolyte solution in which lithium salt is electrolyzed in a hot solvent. By using a mixed 6 medium with an electric medium of a certain ratio, Terasa is able to provide a non-aqueous liquid for use in lithium nitride ponds, which is also excellent in Li-pole photodischarge customization. I can do it.

【図面の簡単な説明】[Brief explanation of the drawing]

第1図〜83図は本発明によ、る亀Pl“敵孕71−1
いた棚台のLi 1■の充放屯効Agと“リーイクル麻
の関・1糸を示す図である。 出願人イい人   目4   宮  正  李第1図 ブイクル数 第2図 ブイク沙数
Figures 1 to 83 show Rutore Pl "Enemy Pregnancy 71-1" according to the present invention.
This is a diagram showing the charge and discharge effect Ag of Li 1■ on the shelf stand and the 1st line of "Liikuru hemp".

Claims (1)

【特許請求の範囲】[Claims] リチウム塩を治恢浴媒に溶解させたリチウム電池゛亀ル
ト’A反において前記治恒溶媒として、112−ジェト
キシエタンと、HIJMe I ! 2−ジェトキシエ
タンよシ向誘電率の非プロトン性物性溶奴の1棟以上の
混合溶媒を用いた孕を神体とするリチウム電池用゛ら解
散。
In the lithium battery "Kamelt'A" in which a lithium salt is dissolved in a treatment bath medium, 112-jethoxyethane and HIJMe I! are used as the treatment solvent. 2-Jetoxyethane is an aprotic physical property with a dielectric constant in the diagonal direction.It is used for lithium batteries using a mixed solvent of one or more molten metals.
JP57206572A 1982-11-25 1982-11-25 Electrolyte for lithium battery Granted JPS5996665A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP57206572A JPS5996665A (en) 1982-11-25 1982-11-25 Electrolyte for lithium battery

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP57206572A JPS5996665A (en) 1982-11-25 1982-11-25 Electrolyte for lithium battery

Publications (2)

Publication Number Publication Date
JPS5996665A true JPS5996665A (en) 1984-06-04
JPH0351068B2 JPH0351068B2 (en) 1991-08-05

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JP57206572A Granted JPS5996665A (en) 1982-11-25 1982-11-25 Electrolyte for lithium battery

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Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS63105478A (en) * 1986-10-20 1988-05-10 Sanyo Electric Co Ltd Secondary battery
JPS6414877A (en) * 1987-07-08 1989-01-19 Fuji Electrochemical Co Ltd Nonaqueous electrolyte battery
JPS6414879A (en) * 1987-07-08 1989-01-19 Fuji Electrochemical Co Ltd Nonaqueous electrolyte battery
JPH01200562A (en) * 1988-02-05 1989-08-11 Fuji Elelctrochem Co Ltd non-aqueous electrolyte battery
JPH01200563A (en) * 1988-02-05 1989-08-11 Fuji Elelctrochem Co Ltd Nonaqueous electrolyte cell
WO2006049027A1 (en) * 2004-11-04 2006-05-11 Matsushita Electric Industrial Co., Ltd. Secondary battery with terminal for surface mounting

Families Citing this family (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US7784147B2 (en) 2003-09-05 2010-08-31 Brunswick Bowling & Billiards Corporation Bowling lane conditioning machine
RU2370324C2 (en) 2003-09-05 2009-10-20 Брансвик Боулинг Энд Биллиардс Корпорэйшн Device and method of bowling trek maintenance using precise feed injectors

Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS5416623A (en) * 1971-02-03 1979-02-07 Du Pont Highhenergyydensity battery
JPS5864768A (en) * 1981-10-14 1983-04-18 Sanyo Electric Co Ltd non-aqueous electrolyte battery

Patent Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS5416623A (en) * 1971-02-03 1979-02-07 Du Pont Highhenergyydensity battery
JPS5864768A (en) * 1981-10-14 1983-04-18 Sanyo Electric Co Ltd non-aqueous electrolyte battery

Cited By (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS63105478A (en) * 1986-10-20 1988-05-10 Sanyo Electric Co Ltd Secondary battery
JPS6414877A (en) * 1987-07-08 1989-01-19 Fuji Electrochemical Co Ltd Nonaqueous electrolyte battery
JPS6414879A (en) * 1987-07-08 1989-01-19 Fuji Electrochemical Co Ltd Nonaqueous electrolyte battery
JPH01200562A (en) * 1988-02-05 1989-08-11 Fuji Elelctrochem Co Ltd non-aqueous electrolyte battery
JPH01200563A (en) * 1988-02-05 1989-08-11 Fuji Elelctrochem Co Ltd Nonaqueous electrolyte cell
WO2006049027A1 (en) * 2004-11-04 2006-05-11 Matsushita Electric Industrial Co., Ltd. Secondary battery with terminal for surface mounting
JPWO2006049027A1 (en) * 2004-11-04 2008-05-29 松下電器産業株式会社 Secondary battery with surface mount terminals
US7622226B2 (en) 2004-11-04 2009-11-24 Panasonic Corporation Secondary battery having a terminal for surface mounting
JP5022035B2 (en) * 2004-11-04 2012-09-12 パナソニック株式会社 Secondary battery with surface mount terminals

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