Pseudocapacitive Storage in Molybdenum Oxynitride Nanostructures Reactively Sputtered on Stainless-Steel Mesh Towards an All-Solid-State Flexible Supercapacitor

被引:27
|
作者
Ranjan, Bhanu [1 ]
Kaur, Davinder [1 ]
机构
[1] Indian Inst Technol Roorkee IIT Roorkee, Dept Phys, Funct Nanomat Res Lab FNRL, Roorkee 247667, Uttarakhand, India
关键词
flexible supercapacitor; high energy density; high power density; molybdenum nitride; molybdenum oxide; pseudocapacitive storage; HIGH-PERFORMANCE; THIN-FILMS; ELECTRODE;
D O I
10.1002/smll.202307723
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Exploiting pseudocapacitance in rationally engineered nanomaterials offers greater energy storage capacities at faster rates. The present research reports a high-performance Molybdenum Oxynitride (MoON) nanostructured material deposited directly over stainless-steel mesh (SSM) via reactive magnetron sputtering technique for flexible symmetric supercapacitor (FSSC) application. The MoON/SSM flexible electrode manifests remarkable Na+-ion pseudocapacitive kinetics, delivering exceptional approximate to 881.83 F g-1 capacitance, thanks to the synergistically coupled interfaces and junctions between nanostructures of Mo2N, MoO2, and MoO3 co-existing phases, resulting in enhanced specific surface area, increased electroactive sites, improved ionic and electronic conductivity. Employing 3D Bode plots, b-value, and Dunn's analysis, a comprehensive insight into the charge-storage mechanism has been presented, revealing the superiority of surface-controlled capacitive and pseudocapacitive kinetics. Utilizing PVA-Na2SO4 gel electrolyte, the assembled all-solid-state FSSC (MoON/SSM||MoON/SSM) exhibits impressive cell capacitance of 30.7 mF cm-2 (438.59 F g-1) at 0.125 mA cm-2. Moreover, the FSSC device outputs a superior energy density of 4.26 mu Wh cm-2 (60.92 Wh kg-1) and high power density of 2.5 mW cm-2 (35.71 kW kg-1). The device manifests remarkable flexibility and excellent electrochemical cyclability of approximate to 91.94% over 10,000 continuous charge-discharge cycles. These intriguing pseudocapacitive performances combined with lightweight, cost-effective, industry-feasible, and environmentally sustainable attributes make the present MoON-based FSSC a potential candidate for energy-storage applications in flexible electronics. The present work reports a high-performance flexible symmetric supercapacitor (FSSC) based on Molybdenum Oxynitride (MoON) nanostructured material deposited directly over stainless-steel mesh (SSM) substrates via DC reactive magnetron sputtering technique. The fabricated all-solid-state FSSC device (MoON/SSM||MoON/SSM) delivers excellent specific capacitance (30.7 mF cm-2 or 438.59 F g-1), superior energy and power densities, wide operating voltage, and impressive electrochemical and mechanical stability.image
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页数:17
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