Robust Nanocomposite of Nitrogen-Doped Reduced Graphene Oxide and MnO2 Nanorods for High-Performance Supercapacitors and Nonenzymatic Peroxide Sensors

被引:63
|
作者
Saraf, Mohit [1 ]
Natarajan, Kaushik [1 ]
Mobin, Shaikh M. [1 ,2 ,3 ]
机构
[1] Indian Inst Technol Indore, Discipline Met Engn & Mat Sci, Khandwa Rd, Indore 453552, Madhya Pradesh, India
[2] Indian Inst Technol Indore, Discipline Chem, Khandwa Rd, Indore 453552, Madhya Pradesh, India
[3] Indian Inst Technol Indore, Discipline Biosci & Biomed Engn, Khandwa Rd, Indore 453552, Madhya Pradesh, India
来源
关键词
One-pot; Hydrothermal; Nanocomposite; Supercapacitor; Peroxide sensor; HYDROGEN-PEROXIDE; FACILE SYNTHESIS; ELECTROCATALYTIC OXIDATION; CARBON NANOTUBES; METAL-OXIDES; ELECTRODE; COMPOSITE; IMPEDANCE; HYBRID; ION;
D O I
10.1021/acssuschemeng.8b01845
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The urgent demand of sustainable energy systems and reliable sensing devices has fostered the development of cost-effective, multifunctional electrode material based platforms. In this work, we have demonstrated the bifunctionality of nitrogen-doped reduced graphene oxide-MnO2 nanocomposite (NRGO-MnO2), toward two most diverse and challenging applications: (i) super capacitor and (ii) peroxide sensor, which was synthesized by a facile one-pot hydrothermal method. The electrochemical investigations revealed its high specific capacitance (648 F g(-1) at 1.5 A g(-1)) with remarkable rate performance (retains 80.20% up to 10 A g(-1)) and long-term cyclic efficiency. Additionally, it can detect peroxide rapidly (2 s), with high sensitivity (2081 mu mM(-1) cm(-2)) and a noteworthy detection limit (24 nM) in a wide dynamic range (0.4-121.2 mu M). Fascinating features such as the distinguished selectivity, repeatability, and operational stability suggests its potency to be an ideal electrode for peroxide sensors. Finally, the charge transfer kinetics and capacitive components, probed by electrochemical impedance spectroscopy (EIS), are found to be in correlation with other investigations. The positive synergism between MnO2 nanorods and NRGO induces higher conductivity and surface area, which eventually promotes superior supercapacitor and sensor performances. The results highlight NRGO-MnO2 nanocomposite as a multifunctional, cutting edge, and sustainable material for next-generation energy storage and sensing applications.
引用
收藏
页码:10489 / 10504
页数:31
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