首页> 外文期刊>Electrochimica Acta >Constraining polyselenide formation in ether based electrolytes through confinement of Se in microporous carbon matrix for Li-Se batteries
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Constraining polyselenide formation in ether based electrolytes through confinement of Se in microporous carbon matrix for Li-Se batteries

机译:通过限制锂-硒电池微孔碳基体中硒的含量限制醚基电解质中聚硒化物的形成

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Nitrogen doped carbon tubes (N-CT) of dia 100 nm are prepared by carbonization of polyaniline tubes and selenium impregnation into N-CT is carried out by melt diffusion process. The N-CT possess micropores and small mesopores that assist in trapping Se. Interestingly, Se absorption in micropores creates steric hindrance for the formation of long chain polyselendes during electrochemical discharge and hence leads to direct formation of Li2Se. Whereas, the small mesopores ensure proper electrode-electrolyte contact rendering good rate capability. Due to the presence of small mesopores a small quantity of polyselenides may be formed during initial cycles, however the nitrogen present in the carbon matrix can help in controlling their dissolution by creating polarity. Hence, it is observed here that after few initial cycles, the multistep reaction between Li and Se has changed to a single step. This is supported by in-situ electrochemical analysis like differential capacity (dQ/dV) plots, cyclic voltammetry impedance analysis and ex-situ UV-vis spectroscopy. (C) 2016 Elsevier Ltd. All rights reserved.
机译:通过聚苯胺管的碳化制备直径为100 nm的掺氮碳管(N-CT),并通过熔体扩散工艺将硒浸渍到N-CT中。 N-CT具有有助于捕获硒的微孔和小中孔。有趣的是,微孔中硒的吸收为电化学放电过程中长链聚硒化物的形成造成位阻,从而导致直接形成Li2Se。而小的中孔可确保适当的电极-电解质接触,从而具有良好的倍率能力。由于存在小的中孔,在初始循环中可能会形成少量的聚硒化物,但是碳基质中存在的氮可以通过产生极性来帮助控制其溶解。因此,在此观察到,在几个初始循环之后,Li和Se之间的多步反应已变为单个步骤。这可以通过原位电化学分析(例如差分容量(dQ / dV)图),循环伏安法阻抗分析和非原位紫外可见光谱技术得到支持。 (C)2016 Elsevier Ltd.保留所有权利。

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