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Highly Defective Layered Double Perovskite Oxide for Efficient Energy Storage via Reversible Pseudocapacitive Oxygen‐Anion Intercalation
Authors:Yu Liu  Zhenbin Wang  Jean‐Pierre Marcel Veder  Zhenye Xu  Yijun Zhong  Wei Zhou  Moses O. Tade  Shaobin Wang  Zongping Shao
Affiliation:1. Department of Chemical Engineering, Curtin University, Perth, WA, Australia;2. Department of Nano Engineering, University of California San Diego, La Jolla, CA, USA;3. John de Laeter Centre, Curtin University, Perth, Western Australia, Australia;4. Jiangsu National Synergetic Innovation Center for Advanced Materials (SICAM), State Key Laboratory of Materials‐Oriented Chemical Engineering, College of Chemical Engineering, Nanjing Tech University, Nanjing, P. R. China
Abstract:The use of perovskite materials as anion‐based intercalation pseudocapacitor electrodes has received significant attention in recent years. Notably, these materials, characterized by high oxygen vacancy concentrations, do not require high surface areas to achieve a high energy storage capacity as a result of the bulk intercalation mechanism. This study reports that reduced PrBaMn2O6–δ (r‐PBM), possessing a layered double perovskite structure, exhibits ultrahigh capacitance and functions as an excellent oxygen anion‐intercalation‐type electrode material for supercapacitors. Formation of the layered double perovskite structure, as facilitated by hydrogen treatment, is shown to significantly enhance the capacitance, with the resulting r‐PBM material demonstrating a very high gravimetric capacitance of 1034.8 F g?1 and an excellent volumetric capacitance of ≈2535.3 F cm?3 at a current density of 1 A g?1. The resultant formation of a double perovskite crystal oxide with a specific layered structure leads to the r‐PBM with a substantially higher oxygen diffusion rate and oxygen vacancy concentration. These superior characteristics show immense promise for their application as oxygen anion‐intercalation‐type electrodes in pseudocapacitors.
Keywords:double perovskite oxides  high oxygen vacancy concentration  oxygen‐ion intercalation  pseudocapacitive supercapacitors
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