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The partially reversible formation of Li-metal particles on a solid Li electrolyte: Applications toward nanobatteries

机译:固态锂电解质上锂金属颗粒的部分可逆形成:在纳米电池中的应用

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The feasibility of large-scale implementation of Li-air batteries (LABs) hinges on understanding the thermodynamic and kinetic factors that control charge-discharge rates, efficiency and life times. Here, the kinetics of bias-induced reactions is explored locally on the surface of Li-ion conductive glass ceramics, a preferred electrolyte for LABs, using direct current-voltage and strain spectroscopies. Above a critical bias, particle growth kinetics were found to be linear in both the bias and time domains. Partial reversibility was observed for Li particles as evidenced by the presence of anodic peaks following the Li ~+ reduction, as well an associated reduction in particle height. The degree of reversibility was highest for the smallest particles formed. These observations thus suggest the possibility of producing nanobatteries with an active anode volume of the order of 0.1al.
机译:大规模实施锂空气电池(LAB)的可行性取决于了解控制充放电速率,效率和寿命的热力学和动力学因素。在这里,使用直流电-电压和应变谱,在锂离子导电玻璃陶瓷(LAB的首选电解质)的表面上局部探索了偏激反应的动力学。在临界偏压以上,发现颗粒生长动力学在偏压和时域均是线性的。 Li颗粒被观察到部分可逆性,这是由Li〜+还原后伴随的阳极峰的存在以及相应的颗粒高度降低所证明的。可形成的最小颗粒的可逆性最高。因此,这些观察结果表明,有可能生产活性阳极体积约为0.1al的纳米电池。

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