A Simple Approach to Boost Capacitance: Flexible Supercapacitors Based on Manganese Oxides@MOFs via Chemically Induced In Situ Self‐Transformation
Yizhou Zhang, Tao Cheng, Yang Wang, Wen‐Yong Lai, Huan Pang, Wei Huang
Abstract
Yizhou Zhang, Tao Cheng, Yang Wang, Wen‐Yong Lai, Huan Pang, Wei Huang
Abstract
An extremely simple in situ self-transformation methodology is developed to introduce pseudocapacitance into the MOF system resulting in a largely boosted electrochemical performance: a three-fold increase in capacitance as well as improved rate capacity. An all-solid-state hybrid flexible supercapacitor is fabricated based on the obtained MnOx -MHCF composite and activated carbon with an areal capacitance of 175 mF cm(-2) at 0.5 mA cm(-2) .
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An extremely simple in situ self-transformation methodology is developed to introduce pseudocapacitance into the MOF system resulting in a largely boosted electrochemical performance: a three-fold increase in capacitance as well as improved rate capacity. An all-solid-state hybrid flexible supercapacitor is fabricated based on the obtained MnOx -MHCF composite and activated carbon with an areal capacitance of 175 mF cm(-2) at 0.5 mA cm(-2) .
Key concepts: Pseudocapacitance, Supercapacitor, Capacitance, Materials science, Manganese, Composite number, In situ, Electrochemistry