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首页> 外文期刊>Bulletin of the Korean Chemical Society >Binder‐ and Carbon‐free Porous Thick Tin Foil Electrode via a Spontaneous Electrochemical and Chemical Process
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Binder‐ and Carbon‐free Porous Thick Tin Foil Electrode via a Spontaneous Electrochemical and Chemical Process

机译:通过自发的电化学和化学过程制成的无粘合剂和无碳的多孔厚锡箔电极

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In this work, a porous Sn foil electrode that is free of binder and conducting agent is prepared for use in lithium ion batteries via a spontaneous method that consists of electrochemical lithiation followed by a chemical dea??lithiation process. In lithium ion battery, conventional Sn foil cannot electrochemically accommodate lithium ions despite the low current density of 50a??mA/g used for cycling because of the high kinetic hindrances resulting from the poor diffusion of lithium between the electrolyte and the electrode. In this work, the surface morphology of Sn foil is modified to be porous to ensure the lithium diffusion pathway from the electrolyte to the electrode using a facile method that does not require special electrochemical equipment. The obtained porous Sn foil exhibits a voltage plateau that corresponds to Li/Sn alloying and a reversible specific capacity that exceeds 300a??mAh/g. The crystal structures, surface morphologies, and electrochemical characteristics of the prepared samples are investigated using Xa??ray diffraction, scanning electron microscopy, and electrochemical analyses.
机译:在这项工作中,通过自发方法制备了不含粘合剂和导电剂的多孔锡箔电极,用于锂离子电池,该方法由电化学锂化和随后的化学脱锂过程组成。在锂离子电池中,尽管用于循环的电流密度低至50a-10 mA / g,常规的锡箔片仍不能电化学地容纳锂离子,这是由于锂在电解质和电极之间的扩散较差而引起的高动力学阻碍。在这项工作中,Sn箔的表面形态被修改为多孔的,以使用不需要特殊电化学设备的简便方法来确保锂从电解质到电极的扩散路径。所获得的多孔锡箔表现出与Li / Sn合金化相对应的电压平稳性,并且可逆比容量超过300a·mAh / g。使用X射线衍射,扫描电子显微镜和电化学分析研究了所制备样品的晶体结构,表面形态和电化学特性。

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