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首页> 外文期刊>Chemistry Select >Lithium Trapping in Microbatteries Based on Lithium- and Cu2O-Coated Copper Nanorods
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Lithium Trapping in Microbatteries Based on Lithium- and Cu2O-Coated Copper Nanorods

机译:基于锂和Cu2O涂层的铜纳米棒中的微生物中的锂诱捕

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Microbatteries based on three-dimensional (3D) electrodes composed of thin films of Li and Cu2O coated on Cu nanorod current collectors by electrodeposition and spontaneous oxidation, respectively, are described and characterised electrochemically. High-resolution scanning electron microscopy (HRSEM) data indicate that the Li electrodeposition resulted in a homogenous coverage of the Cu nanorods and elemental analyses were also used to determine the amount of lithium in the Li-coated electrodes. The results show that 3D Cu2O/Cu electrodes can be cycled versus 3D Li/Cu electrodes but that the capacity decreased during the cycling due to Li trapping in the Cu current collector of the 3D Li/Cu electrode. These findings highlight the problem of using copper current collectors together with metallic lithium as the formation of a solid solution yields considerable losses of electroactive lithium and hence capacity.
机译:通过电沉积和自发氧化,基于由Li和Cu2O的薄膜组成的三维(3D)电极的微生物,在Cu纳米棒电流收集器上涂有薄膜,并在电化学上描述并表征了自发氧化。 高分辨率扫描电子显微镜(HRSEM)数据表明,LI电沉积导致Cu纳米棒的同质覆盖范围,并且还使用元素分析来确定Li涂层电极中的锂量。 结果表明,3D CU2O/CU电极可以循环循环,而3D LI/CU电极可以循环,但是由于LI诱捕3D LI/CU电极的Cu电流收集器,循环过程中的容量降低。 这些发现突出了将铜电流收集器与金属锂一起用作固体溶液的形成的问题,从而产生了相当大的电活性锂损失,因此产生了能力。

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