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Revealing lithium-silicide phase transformations in nano-structured silicon-based lithium ion batteries via in situ NMR spectroscopy

机译:通过原位NMR光谱揭示纳米结构硅基锂离子电池中的硅化锂相变

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Nano-structured silicon anodes are attractive alternatives to graphitic carbons in rechargeable Li-ion batteries, owing to their extremely high capacities. Despite their advantages, numerous issues remain to be addressed, the most basic being to understand the complex kinetics and thermodynamics that control the reactions and structural rearrangements. Elucidating this necessitates real-time in situ metrologies, which are highly challenging, if the whole electrode structure is studied at an atomistic level for multiple cycles under realistic cycling conditions. Here we report that Si nanowires grown on a conducting carbon-fibre support provide a robust model battery system that can be studied by Li-7 in situ NMR spectroscopy. The method allows the (de) alloying reactions of the amorphous silicides to be followed in the 2nd cycle and beyond. In combination with density-functional theory calculations, the results provide insight into the amorphous and amorphous-to-crystalline lithium-silicide transformations, particularly those at low voltages, which are highly relevant to practical cycling strategies.RI Hofmann, Stephan/D-3906-2012OI Hofmann, Stephan/0000-0001-6375-1459
机译:由于其极高的容量,纳米结构的硅阳极是可再充电锂离子电池中石墨碳的有吸引力的替代物。尽管具有优势,但仍有许多问题有待解决,最基本的是要了解控制反应和结构重排的复杂动力学和热力学。要阐明这一点,就需要实时的原位测量技术,如果在现实的循环条件下以多个周期进行原子级的整个电极结构研究,则挑战性很大。在这里,我们报告说,在导电碳纤维载体上生长的Si纳米线提供了可通过Li-7原位NMR光谱研究的强大模型电池系统。该方法允许无定形硅化物的(脱)合金反应在第二循环及之后的循环中进行。结合密度泛函理论计算,结果提供了对非晶硅和非晶硅-晶体硅硅化物转变的洞察力,特别是在低电压下与实际循环策略高度相关的转变.RI Hofmann,Stephan / D-3906 -2012OI Hofmann,Stephan / 0000-0001-6375-1459

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