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Enhancing Distorted Metal-Organic Framework-Derived ZnO as Anode Material for Lithium Storage by the Addition of Ag2S Quantum Dots

机译:通过添加Ag2S量子点增强耐腐蚀的金属 - 有机骨架衍生的ZnO作为锂储存的阳极材料

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摘要

The lithium storage properties of the distorted metal organic framework-derived nanosized ZnO@C are significantly improved by the introduction of Ag2S quantum dots (QDs) during the processing of the material. In the thermal treatment, the Ag2S QDs react to produce Ag nanoparticles and ZnS. The metal nanoparticles act to shorten electron pathways and improve the. connectivity of the matrix, and the partial sulfidation of the ZnO surface improves the cycling stability of the material. The electrochemical properties of ZnO@C, Ag2S QDs-treated ZnO@C, and the amorphous carbon in ZnO@C have been compared. The small weight ratio of Ag2S QDs to ZnO@C at 1:180 shows the best performance in lithium storage. The exhibited specific capacities are improved and retained remarkably in the cycling at high current rates. At low current densities (200 mA g(-1)), treatment of ZnO@C with Ag2S QDs results in a 38% increase in the specific capacity.
机译:通过在材料加工过程中引入Ag2S量子点(QDS),显着改善了扭曲的金属有机骨架衍生的纳米ZnO @ C的锂储存性能。 在热处理中,AG2S QDS反应以生产Ag纳米颗粒和ZnS。 金属纳米颗粒用于缩短电子途径并改善。 基质的连接,ZnO表面的部分硫化改善了材料的循环稳定性。 比较了ZnO @ C,AG2S QDS处理的ZnO @ C和ZnO @ C中的无定形碳的电化学性质。 AG2S QDS在1:180处的ZnO @ C的小重量比显示了锂储存中最佳性能。 表现出的特定能力得到改善和在高电流速率下显着保留。 在低电流密度(200mA g(-1))下,用AG2S QD处理ZnO @ C的处理导致特定容量增加38%。

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