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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Phase-Controlled Synthesis of MnO2 Nanocrystals by Anodic Electrodeposition: Implications for High-Rate Capability Electrochemical Supercapacitors
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Phase-Controlled Synthesis of MnO2 Nanocrystals by Anodic Electrodeposition: Implications for High-Rate Capability Electrochemical Supercapacitors

机译:阳极电沉积相控合成MnO2纳米晶体:对高容量电化学超级电容器的启示

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摘要

The crystal structure of anodically electrodeposited MnO2 nanocrystals can be manipulated by introducing complexing agents in the electrodeposition solutions. MnO2 nanocrystals with three types of crystal structures were observed: hexagonal ε-MnO2 (complex-free), defective rock salt MnO2 (ethylenediaminetetraacetic acid), and defective antifluorite MnO2 (citrate). The capacitive performance of the MnO2 nanocrystals depends strongly on their crystal structures. MnO2 with defective rock salt and antifluorite structures exhibit better capacitive properties than ε-MnO2. The electrochemical capacitance differences can be explained in terms of the crystal chemistry. In both the defective rock salt and antifluorite MnO2, an anomalous trend was observed. The specific capacitance does not decrease with increasing scanning rate. A possible reason is that certain physicochemical changes, such as phase transformations or morphology changes, occur preferentially at high cycling rates.
机译:可以通过在电沉积溶液中引入络合剂来控制阳极电沉积MnO2纳米晶体的晶体结构。观察到具有三种类型晶体结构的MnO2纳米晶体:六方ε-MnO2(无络合物),有缺陷的岩盐MnO2(乙二胺四乙酸)和有缺陷的抗萤石MnO2(柠檬酸盐)。 MnO2纳米晶体的电容性能在很大程度上取决于其晶体结构。具有不良盐分和抗萤石结构的MnO2比ε-MnO2具有更好的电容性能。电化学电容差异可以用晶体化学来解释。在有缺陷的岩盐和抗萤石MnO2中,都观察到异常趋势。比电容不会随着扫描速率的增加而降低。一个可能的原因是某些物理化学变化(例如相变或形态变化)优先以高循环速率发生。

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