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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Synthesis of Ge4Se9 nano plates and a reduced graphene oxide composite of Ge4Se9 for electrochemical energy storage application
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Synthesis of Ge4Se9 nano plates and a reduced graphene oxide composite of Ge4Se9 for electrochemical energy storage application

机译:电化学储能应用的Ge4se9纳米板的合成及Ge4se9的氧化石墨烯复合物

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摘要

In this study, we introduced a facile and single-step synthetic protocol for the scalable synthesis of tetra germanium nonaselenide (Ge4Se9) and it's composite with reduced graphene oxide (RG). The physicochemical properties of the samples were studied systematically, and their electrochemical performances for energy storage in supercapacitors were explored. Herein, the weight percentage of graphene oxide in the composite played a vital role in the enhancement of charge storage. Among other composites, the Ge4Se9/RG1 composite showed an enhanced specific capacitance (220 F g(-1)) with a higher specific energy (12 W h kg(-1)) as well as power (4.6 kW kg(-1)). Moreover, the composite showed excellent cycling stability (with 91% of capacitance retention after 10 000 repeated cycles) and reversibility (similar to 98% coulombic efficiency). Furthermore, the robustness of the composite was accessed via the post-stability analysis.
机译:在该研究中,我们介绍了一种容易和单步合成方案,用于可扩展合成Tetra锗壬烯烯(Ge4Se9),并且是具有还原的氧化石墨烯(RG)的复合材料。 系统研究了样品的物理化学性质,探讨了超级电容器中的能量储存的电化学性能。 在此,复合材料中的石墨烯的重量百分比在增强电荷储存中起着至关重要的作用。 在其他复合材料中,GE4SE9 / RG1复合材料显示出具有更高的特定能量(12WH kg(-1))以及电源(4.6kW kg(-1))的增强的特定电容(220 f g(-1)) )。 此外,复合材料显示出优异的循环稳定性(在10 000次重复循环后的电容保留的91%)和可逆性(类似于98%的库仑效率)。 此外,通过后稳定性分析访问复合材料的稳健性。

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