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Thermal stability of graphite anode with electrolyte in lithium-ion cells

机译:锂离子电池中带电解质的石墨阳极的热稳定性

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摘要

Thermal stability of electrochemically lithiated graphite with 1 M LiPF6/EC + DMC and PVdF-binder has been investigated. DSC measurements using an airtight sample case reveal a mild heat generation started from 130 degreesC with a small peak at 140 degreesC. The mild heat generation continued until a sharp exothermic peak appeared at 280 degreesC. The heat evolved in the small peak at 140 degreesC decreased by storage of the lithiated graphite with PVdF and the electrolyte at 50 degreesC for 3 days before the DSC measurements. The lithiated graphite with the electrolyte without PVdF-binder did not show the small peak at 140 degreesC. The peak at 140 degreesC seems to be caused by the reaction (the Solid Electrolyte Interphase (SEI) formation) of the electrolyte and lithiated graphite, whose surface is covered by poly(vinylidene flouride) (PVdF)-binder without formation of SEI at a lower temperature. The mild heat generation from 140 to 280 degreesC is the reaction of the lithiated graphite and the electrolyte through SEI (SEI formation), because there was no such mild heat generation when non-lithiated graphite was used. The peak at 280 degreesC is probably a direct reaction of lithiated graphite and electrolyte by a breakdown of SEI. (C) 2002 Elsevier Science B.V. All rights reserved. [References: 17]
机译:研究了使用1 M LiPF6 / EC + DMC和PVdF粘合剂的电化学锂化石墨的热稳定性。使用气密样品盒的DSC测量显示从130摄氏度开始有温和的热量产生,在140摄氏度有一个小峰值。继续产生轻微的热量,直到在280℃出现一个放热峰。在DSC测量之前,通过将PVDF和PVdF的锂化石墨储存在50摄氏度下3天,在140摄氏度的小峰中放出的热量减少了。不含PVdF粘合剂的带有电解质的锂化石墨在140℃时未出现小峰。 140℃的峰值似乎是由电解质和锂化石墨的反应(形成固体电解质中间相(SEI))引起的,其表面被聚偏二氟乙烯(PVdF)粘合剂覆盖,而在室温下未形成SEI。较低的温度。从140至280℃的温和发热是锂化石墨和电解质通过SEI的反应(SEI形成),因为当使用非锂化石墨时不存在这种温和发热。 280℃时的峰可能是由于SEI分解而导致的锂化石墨与电解质的直接反应。 (C)2002 Elsevier Science B.V.保留所有权利。 [参考:17]

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