刘安敏
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One-pot synthesis of 2D Ti3C2/Ni2CO3(OH)(2) composite as electrode material with superior capacity and high stability for hybrid supercapacitor
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Indexed by:期刊论文

Date of Publication:2018-12-01

Journal:ELECTROCHIMICA ACTA

Included Journals:SCIE、Scopus

Volume:292

Page Number:168-179

ISSN No.:0013-4686

Key Words:MXene; Composite; Synergistic effect; One-pot; Supercapacitor

Abstract:MXene-based materials are promising electrode materials for supercapacitors. Herein, Ni2CO3(OH)(2) nanosheets and/or nanoparticles are in-situ grown on the surface of two-dimensional (2D) Ti3C2 to form Ti3C2/Ni2CO3(OH)(2) composites during one-pot hydrothermal processing. The uniform distribution of Ni2CO3 (OH)(2) on Ti3C2 is due to the electrostatic interaction between positively charged nickel ions and negatively charged Ti3C2. Importantly, the electrochemical performance of Ti3C2/Ni2CO3(OH)(2) are enhanced. The 30-Ti3C2/Ni2CO3(OH)(2) composite electrode exhibits a specific capacity of 173.8 mAh g(-1) at 1 Ag-1 and excellent cycling stability (capacity retention of 80.1% after 5000 cycles at 10 Ag-1). The hybrid supercapacitor using 30-Ti3C2/Ni2CO3 (OH)(2) composite as positive electrode and active carbon as negative electrode delivers a high energy density of 28.2 Wh kg(-1) at a power density of 374.8 W kg(-1). The super performance of the composite electrode is attributed to the synergistic effects of good redox activity of Ni2CO3(OH)(2) particles combined with high electronic conductivity of 2D Ti3C2. The excellent electrochemical performance of Ti3C2/Ni2CO3(OH)(2) composite indicates its potential as a promising electrode material to high energy/power density energy storage devices. (C) 2018 Elsevier Ltd. All rights reserved.

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Associate Professor
Supervisor of Master's Candidates

Gender:Male

Alma Mater:哈尔滨工业大学

Degree:Doctoral Degree

School/Department:化工海洋与生命学院

Discipline:Chemical Engineering. Energy Chemical Technology. Chemistry and Chemical Engineering of Functional

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Contact Information:0427-2631809

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