KR100987376B1 - 리튬전지용 결합제와 전극 및 이를 채용한 리튬전지 - Google Patents
리튬전지용 결합제와 전극 및 이를 채용한 리튬전지 Download PDFInfo
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- KR100987376B1 KR100987376B1 KR1020030059666A KR20030059666A KR100987376B1 KR 100987376 B1 KR100987376 B1 KR 100987376B1 KR 1020030059666 A KR1020030059666 A KR 1020030059666A KR 20030059666 A KR20030059666 A KR 20030059666A KR 100987376 B1 KR100987376 B1 KR 100987376B1
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Abstract
Description
구분 | 높이 | I | |
H-880 | H-840 | ||
실시예 1 | 0.006 | 0.005 | 0.83 |
비교예 1 | 0.007 | 0.002 | 0.29 |
실시예 2 | 0.007 | 0.005 | 0.71 |
비교예 2 | 0.006 | 0.002 | 0.33 |
구분 | 높이 | I | |
H-880 | H-840 | ||
실시예 3 | 0.005 | 0.004 | 0.80 |
실시예 4 | 0.005 | 0.002 | 0.40 |
비교예 3 | 0.006 | 0.002 | 0.33 |
실시예 5 | 0.004 | 0.002 | 0.50 |
구분 | 높이 | I | |
H-880 | H-840 | ||
비교예 4 | 0.024 | 0.006 | 0.25 |
실시예 6 | 0.021 | 0.013 | 0.62 |
비교예 5 | 0.023 | 0.007 | 0.30 |
실시예 7 | 0.026 | 0.017 | 0.65 |
번호 | Iγ | 건조온도 (℃) |
코팅속도 (m/min) | 사이클 회수 | 방전용량 (mAh) |
초기값 유지율 |
실시예 1 | 0.83 | 120 | 10 | 80 | 2046.8 | 95.2 |
비교예 1 | 0.29 | 150 | 10 | 60 | 1872.4 | 87.1 |
실시예 2 | 0.71 | 110 | 20 | 80 | 2031.2 | 94.5 |
비교예 2 | 0.33 | 120 | 40 | 80 | 1806.4 | 84.0 |
실시예 3 | 0.80 | 10 | 15 | 80 | 2029.4 | 94.4 |
실시예 4 | 0.40 | 100 | 20 | 80 | 2016.9 | 93.8 |
비교예 3 | 0.33 | 160 | 20 | 80 | 1806.4 | 84.0 |
실시예 5 | 0.50 | 80 | 10 | 80 | 2023.4 | 94.1 |
비교예 4 | 0.25 | 150 | 10 | 60 | 1917.6 | 89.2 |
실시예 6 | 0.62 | 120 | 10 | 60 | 2078.5 | 96.7 |
비교예 5 | 0.30 | 110 | 40 | 60 | 1858.9 | 86.5 |
실시예 7 | 0.65 | 120 | 10 | 60 | 2062.1 | 95.9 |
Claims (14)
- 삭제
- 양극 활물질 또는 음극 활물질;도전제;유기 용매; 및γ-상의 적외선 흡광 피크 분율 I가 0.35 내지 1.00인 폴리비닐리덴플루오라이드(PVDF)를 포함하며,상기 PVDF의 적외선 흡광 피크 분율 I는 I = I820-850 / I860-880에 의해 얻어지고, I820-850은 γ-상의 화합물의 CH2 로킹밴드(rocking band)로부터 기인하는 피크의 높이를 나타내며, I860-880은 α-상 및 γ-상 두 조성 화합물의 백본에 대한 피크 높이인 것을 특징으로 하는 리튬 전지용 전극
- 제2항에 있어서, 상기 양극 활물질이 리튬복합산화물, 단체황, Li2Sn(n≥1)이 용해된 캐솔라이트, 유기황 및 (C2Sx)y (x는 2.5 내지 20, y≥2)로 이루어진 군으로부터 선택된 하나 이상인 것을 특징으로 하는 리튬 전지용 전극.
- 제2항에 있어서, 상기 음극 활물질이 천연흑연, 인조흑연, 코크스 또는 탄소섬유의 흑연질 재료; Li과 합금이 가능한 Al, Si, Sn, Ag, Bi, Mg, Zn, In, Ge, Pb 및 Ti로 이루어진 군으로부터 선택된 하나 이상의 원소를 포함하는 화합물; Al, Si, Sn, Ag, Bi, Mg, Zn, In, Ge, Pb 및 Ti로 이루어진 군으로부터 선택된 하나 이상의 원소를 포함하는 화합물과 상기 흑연질 재료 및 탄소의 복합화물; 또는 리튬 함유 질화물로 이루어진 군으로부터 선택된 하나 이상인 것을 특징으로 하는 리튬 전지용 전극.
- 제2항에 있어서, 상기 도전제가 카본 블랙, 또는 니켈 분말인 것을 특징으 로 하는 리튬 전지용 전극.
- 제2항에 있어서, 상기 유기 용매가 디메틸포름아미드(DMF), 디메틸술폭시드(DMSO), 디메틸아세테이트(DMA), 아세톤, N-메틸-2-피롤리돈 또는 이들의 2종 이상 혼합물인 것을 특징으로 하는 리튬 전지용 전극.
- (a) 양극 활물질 또는 음극 활물질; 도전제; 유기용매; 및 PVDF;를 혼합하여 활물질 용액을 형성하는 단계;(b) 얻어진 활물질 용액을 양극면 또는 음극면에 코팅하고 건조하는 단계; 및(c) 상기 양극면 또는 음극면을 가압하에 진공 건조하는 단계;를 포함하며,생성물인 양극면 또는 음극면이 γ-상의 적외선 흡광 피크 분율 I가 0.35 내지 1.00인 PVDF를 포함하고,상기 PVDF의 적외선 흡광 피크 분율 I는 I = I820-850 / I860-880에 의해 얻어지고, I820-850은 γ-상의 화합물의 CH2 로킹밴드(rocking band)로부터 기인하는 피크의 높이를 나타내며, I860-880은 α-상 및 γ-상 두 조성 화합물의 백본에 대한 피크 높이인 것을 특징으로 하는 리튬 전지용 전극의 제조방법.
- 제7항에 있어서, 상기 (b) 단계의 건조 온도가 80 내지 120℃인 것을 특징으로 하는 리튬 전지용 전극의 제조방법.
- 제7항에 있어서, 상기 (b) 단계의 코팅 속도가 10 내지 30 min/m인 것을 특징으로 하는 리튬 전지용 전극의 제조방법.
- 제7항에 있어서, 상기 (c) 단계의 가압이 1 내지 1,000kg/cm2의 압력하에 행해지는 것을 특징으로 하는 리튬 전지용 전극의 제조방법.
- 제7항에 있어서, 상기 유기 용매의 사용량이 PVDF에 대하여 1 : 0.1 내지 100의 중량비인 것을 특징으로 하는 리튬 전지용 전극의 제조방법.
- 삭제
- 상기 제2항 내지 제6항 중 어느 한 항에 따른 전극을 채용한 것을 특징으로 하는 리튬 전지.
- 상기 제7항 내지 제11항 중 어느 한 항에 따른 제조방법에 따라 얻어진 전극을 채용한 것을 특징으로 하는 리튬 전지.
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KR1020030059666A KR100987376B1 (ko) | 2003-08-27 | 2003-08-27 | 리튬전지용 결합제와 전극 및 이를 채용한 리튬전지 |
US10/922,919 US7700225B2 (en) | 2003-08-27 | 2004-08-23 | Binder and electrode for lithium battery, and lithium battery containing the same |
JP2004245634A JP4371952B2 (ja) | 2003-08-27 | 2004-08-25 | リチウム電池用の結合剤と電極及びそれを採用したリチウム電池 |
CNB2004100851787A CN100411232C (zh) | 2003-08-27 | 2004-08-27 | 用于锂电池的粘合剂和电极和含有粘合剂和电极的锂电池 |
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KR20050023179A KR20050023179A (ko) | 2005-03-09 |
KR100987376B1 true KR100987376B1 (ko) | 2010-10-12 |
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CN (1) | CN100411232C (ko) |
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EP1721014B1 (en) | 2004-02-18 | 2013-07-17 | Trustees Of Boston University | Method for detecting and quantifying rare mutations/polymorphisms |
JP5317407B2 (ja) * | 2006-10-17 | 2013-10-16 | 三星エスディアイ株式会社 | 非水二次電池 |
JP2009123498A (ja) * | 2007-11-14 | 2009-06-04 | Sony Corp | 非水電解液組成物及び非水電解液電池 |
JP2009123497A (ja) * | 2007-11-14 | 2009-06-04 | Sony Corp | 非水電解液組成物及び非水電解液電池 |
JP5163065B2 (ja) * | 2007-11-14 | 2013-03-13 | ソニー株式会社 | 非水電解液二次電池および非水電解液組成物 |
WO2012079231A1 (en) * | 2010-12-15 | 2012-06-21 | Rhodia (China) Co., Ltd. | Fluoropolymer compositions |
JP4988972B1 (ja) * | 2011-04-08 | 2012-08-01 | 帝人株式会社 | 非水系二次電池用セパレータおよび非水系二次電池 |
US9281508B2 (en) | 2011-04-08 | 2016-03-08 | Teijin Limited | Separator for nonaqueous secondary battery, and nonaqueous secondary battery |
CN103094525B (zh) * | 2011-10-28 | 2016-08-03 | 清华大学 | 锂离子电池负极及其制备方法 |
US9518155B2 (en) | 2012-04-16 | 2016-12-13 | Rhodia Operations | Fluoropolymer compositions |
JP2014029789A (ja) * | 2012-07-31 | 2014-02-13 | Sanyo Electric Co Ltd | 非水電解質二次電池及びその製造方法 |
KR20140113186A (ko) * | 2013-03-15 | 2014-09-24 | 삼성에스디아이 주식회사 | 전극 조립체 및 이를 이용한 이차전지의 제조방법 |
JP6209844B2 (ja) * | 2013-04-02 | 2017-10-11 | 日産自動車株式会社 | 非水電池用電極およびその製造方法 |
JP6287022B2 (ja) * | 2013-10-08 | 2018-03-07 | 日産自動車株式会社 | 電気デバイス用電極およびその製造方法 |
CN113223860B (zh) | 2014-04-18 | 2023-08-08 | 特斯拉公司 | 干式储能装置电极及其制造方法 |
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US10790538B2 (en) | 2017-08-11 | 2020-09-29 | Industrial Technology Research Institute | Negative electrode and lithium ion battery |
CN114447339B (zh) * | 2022-03-15 | 2023-09-15 | 宁夏氟峰新材料科技有限公司 | 一种用于锂电池的改性PVDF/纳米MOFs胶粘剂及制备方法 |
CN116715798B (zh) * | 2023-08-03 | 2024-02-23 | 宁德时代新能源科技股份有限公司 | 含氟聚合物、制备方法、正极极片、二次电池及用电装置 |
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US20050048368A1 (en) | 2005-03-03 |
CN100411232C (zh) | 2008-08-13 |
CN1591939A (zh) | 2005-03-09 |
JP4371952B2 (ja) | 2009-11-25 |
JP2005072009A (ja) | 2005-03-17 |
US7700225B2 (en) | 2010-04-20 |
KR20050023179A (ko) | 2005-03-09 |
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