本文主要研究内容
作者(2019)在《Room-temperature facile synthesis of MnO2on carbon film via UV-photolysis for supercapacitor》一文中研究指出:A facile UV-photolysis method has been developed to synthesize birnessite-type MnO2 nanosheets on carbon film at room temperature for supercapacitor electrode materials. The results clearly demonstrated that the specific capacitance of carbon/MnO2 composite electrodes was controlled by the adjustable UV-photolysis reaction time in KMnO4 solution. For the optimized composite electrode obtained after 2 h reaction, a superior specific capacitance of 277 Fg-1 was achieved at current density of 0.2 Ag-1. This finding suggests that UV-photolysis is a potential method to fabricate MnO2 on carbon film for supercapacitor.
Abstract
A facile UV-photolysis method has been developed to synthesize birnessite-type MnO2 nanosheets on carbon film at room temperature for supercapacitor electrode materials. The results clearly demonstrated that the specific capacitance of carbon/MnO2 composite electrodes was controlled by the adjustable UV-photolysis reaction time in KMnO4 solution. For the optimized composite electrode obtained after 2 h reaction, a superior specific capacitance of 277 Fg-1 was achieved at current density of 0.2 Ag-1. This finding suggests that UV-photolysis is a potential method to fabricate MnO2 on carbon film for supercapacitor.
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论文详细介绍
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:Room-temperature facile synthesis of MnO2on carbon film via UV-photolysis for supercapacitor论文
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