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The role of anions, solvent molecules and solvated electrons in layer formation processes on anode materials for rechargeable lithium batteries

机译:阴离子,溶剂分子和溶剂化电子在可充电锂电池负极材料的成膜过程中的作用

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摘要

The reactivity of anions, solvent molecules and solvated electrons against anode materials are coupled in a given electrolyte solution. The ratio between anion and solvent decomposition depends on the potential and the electrolyte composition. The life time of trapped solvated electrons within the growing SEI layer depends on the donor--acceptor properties of the incorporated solvent molecules and is in the range among 3--l0 s. The places of the trapped electrons are the origin of 'metallic' lithium clusters within the forming layer. Their growth will lead to the well-known lithium dendrites on lithium--metal or the progressive irreversible capacity loss on lithium--carbons and therefore causes a lot of problems. Suggestions wil1 be made how to solve these problems in order to achieve a homogeneous SEl' with a reduced dendrite growth or decreased irreversible capacity loss.
机译:阴离子,溶剂分子和溶剂化电子对阳极材料的反应性在给定的电解质溶液中耦合。阴离子和溶剂分解之间的比例取决于电势和电解质组成。在生长的SEI层中捕获的溶剂化电子的寿命取决于所结合的溶剂分子的施主-受主特性,范围为3-l s。被俘获的电子的位置是形成层内“金属”锂簇的起源。它们的生长将导致金属锂上众所周知的锂树枝状晶体或锂碳上逐渐不可逆的容量损失,因此会引起很多问题。将提出如何解决这些问题的建议,以实现均一的SEl',同时减少枝晶生长或减少不可逆容量损失。

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