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利用电离辐射降解碳酸亚乙酯/碳酸二乙酯混合物

Degradation of an Ethylene Carbonate/Diethyl Carbonate Mixture by Using Ionizing Radiation.

作者信息

Wang Furong, Varenne Fanny, Ortiz Daniel, Pinzio Valentin, Mostafavi Mehran, Le Caër Sophie

机构信息

Laboratoire de Chimie-Physique/ELYSE, UMR 8000 CNRS/UPS, Université Paris Sud, Bât. 349, F-91405, Orsay Cedex, France.

LIONS, NIMBE, UMR 3685, CEA, CNRS, Université Paris-Saclay, CEA Saclay, Bât. 546, F-91191, Gif-sur-Yvette Cedex, France.

出版信息

Chemphyschem. 2017 Oct 6;18(19):2799-2806. doi: 10.1002/cphc.201700320. Epub 2017 May 10.

DOI:10.1002/cphc.201700320
PMID:28419652
Abstract

The reactivity of ethylene carbonate (EC) and of a EC/diethyl carbonate (DEC) mixture was studied under ionizing radiation to mimic the aging phenomena that occur in lithium-ion batteries. Picosecond-pulse radiolysis experiments showed that the attachment of the electron to the EC molecule is ultrafast (k(e +EC)=1.3×10  L mol  s at 46 °C). This reaction rate is accelerated by a factor of 5.7 compared with the electron attachment to propylene carbonate, which implies that the presence of the methyl group significantly slows the reaction. In a 50:50 EC/DEC mixture, just after the electron pulse the electron is solvated by a mixture of EC and DEC molecules, but its fast decay is attributed exclusively to electron attachment to the EC molecule. Stable products detected after steady-state irradiation were mainly H , CH , CO, and CO . The evolution of the radiolytic yields with the EC fraction shows that H and CH did not exhibit linear behavior, whereas CO and CO did. Indeed, H and CH mainly arise from the excited state of DEC, the formation of which is significantly affected by the evolution of the dielectric constant of the mixture and by the electron attachment to EC. CO formation is mainly due to the reactivity of the EC molecule, which is not affected in the mixture, as proven by pulse-radiolysis experiments.

摘要

研究了碳酸亚乙酯(EC)以及EC/碳酸二乙酯(DEC)混合物在电离辐射下的反应活性,以模拟锂离子电池中发生的老化现象。皮秒脉冲辐解实验表明,电子与EC分子的结合是超快的(在46°C时,k(e +EC)=1.3×10 L mol  s)。与电子和碳酸丙烯酯的结合相比,该反应速率加快了5.7倍,这意味着甲基的存在显著减缓了反应。在50:50的EC/DEC混合物中,电子脉冲后,电子被EC和DEC分子的混合物溶剂化,但其快速衰减完全归因于电子与EC分子的结合。稳态辐照后检测到的稳定产物主要是H、CH、CO和CO 。辐解产率随EC含量的变化表明,H和CH没有呈现线性行为,而CO和CO呈现线性行为。实际上,H和CH主要源于DEC的激发态,其形成受到混合物介电常数的变化以及电子与EC结合的显著影响。CO的形成主要归因于EC分子的反应活性,脉冲辐解实验证明,在混合物中其不受影响。

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