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| 1 | 离子液体和低共熔溶剂绿色回收废旧锂离子电池的研究进展显示文摘温和条件下废旧锂离子电池的绿色高效回收具有重大意义,目前利用离子液体和低共熔溶剂回废旧收锂离子电池的综述报道较少。本综述回顾近年离子液体和低共熔溶剂回收废旧锂离子电池,分析离子液体和低共熔溶剂对不同锂离子电池正极材料回收的差异性,介绍绿色溶剂结构、酸碱性、电池组成、温度、时间、质量比等因素对回收的影响,归纳绿色溶剂回收废旧锂离子电池的热力学和动力学规律及其溶解机制,并指出利用离子液体和低共熔溶剂回收废旧锂离子电池目前存在的一些问题及其提出可能的应对策略。 | 陈钰 刘冲 邱于荟 贲梓欣 牟天成 | 2022 | 化工进展2022,41,S01: | 3 |
| 2 | Dynamic chemistry in ionic liquid-based conductor显示文摘Ionic liquids,as a kind of liquid conductors with the unique inherent abilities of rapid self-healing,highly adaptive deformation,reconstruction,as well as high ionic conductivity,have been highly praised and recommended as a new competitive conducting material for green electronics.However,ionic liquids are likely encountered with the leakage problems when they are integrated into electronic devices.This issue as well as the need to develop intelligent electronics stimulate the innovation of ionic liquids with response characters besides conducting performance.Some'innovative'or'functional'ionic liquids consisting dynamic chemical bonds can reversibly switch between different states in response to external stimuli.These specialized ionic liquids afford powerful supplements to minimize the issue of leakage of ionic liquid conductors from electrical circuits,and also exhibit the properties of self-healing,reprocessing,adaptive deformation,which accord with the forthcoming era of Internet of Things.This minireview systematically summarizes the progresses of ionic liquid-based conductors containing dynamic bonds,particularly highlighting their applicable merits in self-healing,stretchable,and recyclable aspects.We also discuss the challenges in the next period and describe an unambiguous future of this research area. | Zhiwu Chen Qinyuan Gui Yapei Wang | 2021 | Green Chemical Engineering2021,2,4: | 1 |
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