首页> 外文期刊>Journal of intelligent material systems and structures >Multifunctional Li(Ni_(0.5)Co_(0.2)Mn_(0.3)) O_2-Si batteries with self-actuation and self-sensing
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Multifunctional Li(Ni_(0.5)Co_(0.2)Mn_(0.3)) O_2-Si batteries with self-actuation and self-sensing

机译:具有自驱动和自感应功能的多功能Li(Ni_(0.5_Co_(0.2)Mn_(0.3))O_2-Si电池

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摘要

Among anode materials for Li-ion batteries, Si is known for high theoretical capacity, low cost, large volume change, relatively fast capacity fade and significant stress-potential coupling. This article shows that a Li(Ni0.5Co0.2Mn0.3)O-2-Si battery can store energy, actuate with Si volume change and sense with stress-potential coupling. Experiments are conducted in an electrolyte-filled chamber with a glass window with Li(Ni0.5Co0.2Mn0.3)O-2 cathodes and Si composite anodes. The Si anodes are single-side coated on Cu current collector with Si nanoparticles, polyacrylic acid binder and conductive carbon black in a porous composite structure. During charging, the battery stores energy, Li inserts in the cantilevered Si anodes and the cantilevers bend laterally. Discharging the battery releases the stored energy and straightens the Si cantilevers. Imposing deformation on the Si cantilevers at a fixed state of charge causes bending stress in the composite coating and a change in the open circuit potential. Testing at 1 Hz confirms that the Si composite responds to dynamic stress variations and with almost no phase lag, indicating the bandwidth of the stress-potential coupling in Si composite anodes is at least 1 Hz..
机译:在用于锂离子电池的负极材料中,Si以高理论容量,低成本,大体积变化,相对快速的容量衰减和显着的应力-电位耦合而著称。本文表明,Li(Ni0.5Co0.2Mn0.3)O-2-Si电池可以存储能量,随着Si体积的变化而激活,并通过应力-电位耦合感应。实验是在装有玻璃窗的电解质填充室中进行的,该玻璃窗具有Li(Ni0.5Co0.2Mn0.3)O-2阴极和Si复合阳极。硅阳极通过多孔复合结构中的硅纳米颗粒,聚丙烯酸粘合剂和导电炭黑单面涂覆在铜集流体上。充电过程中,电池存储能量,Li插入悬臂式Si阳极,悬臂横向弯曲。电池放电会释放存储的能量并拉直Si悬臂。在固定电荷状态下在Si悬臂上施加变形会导致复合涂层的弯曲应力和开路电势的变化。以1 Hz进行的测试证实了Si复合材料对动态应力变化的响应,并且几乎没有相位滞后,这表明Si复合阳极中的应力-电位耦合带宽至少为1 Hz。

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