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Electrochemomechanical Properties of Red Phosphorus with Lithium, Sodium and Potassium

机译:红磷与锂,钠和钾红磷的电化学性能

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Red phosphorus is a promising anode material thanks to its ability to form alloys with lithium, sodium and potassium, thus achieving high theoretical capacity (2596 mAh g~(-1) with Li and Na and 865 mAh g~(-1) with K). However, it suffers from its low electronic conductivity and a huge volume expansion that leads to the formation of stress with consequent fracture and pulverization of the particle. In this work, red phosphorus particles have been analyzed with in-situ TEM techniques in order to study the mechanism of the crack formation during the volume expansion with lithium, sodium and potassium. This experiment is coupled with computational modelling of the particles and the simulation of the diffusion of the ions through the particles to understand the development of stresses that can lead to the nucleation of the crack and the failure of the particle.
机译:由于其与锂,钠和钾形成合金的能力,红磷是一种有前途的阳极材料,从而实现高理论能力(2596mAhg〜(-1),用k和865mah g〜(-1) )。 然而,它遭受其低电子导电性和巨大的体积膨胀,从而导致颗粒的裂缝和粉碎形成应力。 在这项工作中,已经用原位的TEM技术分析了红磷颗粒,以研究在用锂,钠和钾的体积膨胀过程中裂缝形成的机理。 该实验与颗粒的计算建模和离子扩散通过颗粒的模拟,以了解能够导致裂缝核和颗粒的失效的应力的发展。

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