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首页> 外文期刊>Journal of physical chemistry letters >Ultrafast Decay of the Solvated Electron in a Neat Polar Solvent: The Unusual Case of Propylene Carbonate
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Ultrafast Decay of the Solvated Electron in a Neat Polar Solvent: The Unusual Case of Propylene Carbonate

机译:溶剂在纯净极性溶剂中的电子超快衰减:碳酸丙烯酯的罕见情况

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摘要

The behavior of carbonates is critical for a detailed understanding of aging phenomena in Li-ion batteries. Here we study the first reaction stages of propylene carbonate (PC), a cyclical carbonate, by picosecond pulse radiolysis. An absorption band with a maximum around 1360 nm is observed at 20 ps after the electron pulse and is shifted to 1310 nm after 50 ps. This band presents the features of a solvated electron absorption band, the solvation lasting up to 50 ps. Surprisingly, in this polar solvent, the solvated electron follows an ultrafast decay and disappears with a half time of 360 ps. This is attributed to the formation of a radical anion PC-center dot. The yield of the solvated electron is low, suggesting that the radical anions are mainly directly produced from presolvated electrons. These results demonstrate that the initial electron transfers mechanisms are strongly different in linear compared with cyclical carbonates.
机译:碳酸盐的行为对于详细了解锂离子电池的老化现象至关重要。在这里,我们通过皮秒脉冲辐射分解研究了碳酸亚丙酯(一种环状碳酸酯)的第一个反应阶段。在电子脉冲后20 ps处观察到最大1360 nm附近的吸收带,在50 ps后移至1310 nm。该带呈现出溶剂化电子吸收带的特征,该溶剂化持续高达50 ps。出乎意料的是,在这种极性溶剂中,溶剂化的电子会快速衰减,并在360 ps的一半时间内消失。这归因于自由基阴离子PC中心点的形成。溶剂化电子的产率低,表明自由基阴离子主要直接由预溶剂化电子产生。这些结果表明,与环状碳酸酯相比,线性的初始电子转移机理存在很大差异。

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