Exfoliated transition metal dichalcogenide (MX2; M = Mo, W; X= S, Se, Te) nanosheets and their composites with polyaniline nanofibers for electrochemical capacitors

被引:34
|
作者
Sajedi-Moghaddam, Ali [1 ]
Mayorga-Martinez, Carmen C. [2 ]
Saievar-Iranizad, Esmaiel [4 ]
Sofer, Zdenek [2 ]
Pumera, Martin [1 ,2 ,3 ,4 ]
机构
[1] Brno Univ Technol, Cent European Inst Technol, Future Energy & Innovat Lab, Purkynova 656-123, CZ-61600 Brno, Czech Republic
[2] Univ Chem & Technol Prague, Dept Inorgan Chem, Ctr Adv Funct Nanorobots, Tech 5, Prague 16628 6, Czech Republic
[3] Yonsei Univ, Dept Chem & Biomol Engn, 50 Yonsei Ro, Seoul 03722, South Korea
[4] Tarbiat Modares Univ, Fac Basic Sci, Phys Dept, POB 14115-175, Tehran, Iran
关键词
Supercapacitors; Polyaniline nanofibers; Group 6 transition metal dichalcogenides; Specific capacitance; Electrode materials; 2-DIMENSIONAL NANOMATERIALS; ELECTRODE-MATERIALS; ENERGY-STORAGE; SUPERCAPACITORS; GRAPHENE; CARBON; WS2; MOSE2; WSE2; PANI;
D O I
10.1016/j.apmt.2019.06.002
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Ultrathin sheets of transition metal dichalcogenides have received a great deal of interest in an attempt to develop advanced electrode nanomaterials for electrochemical capacitors, with most of the attention focused on pure transition metal dichalcogenides. We systematically investigated and compared the charge storage capability of tert-butyllithium-exfoliated group 6 transition metal dichalcogenide materials (MX2; M=Mo, W; X=S, Se, Te). The group 6 MX(2)2D materials exhibited distinctive charge storage performance as a result of their different chemical compositions and morphological features. MoTe2 nanosheets demonstrated the highest gravimetric capacitance of all materials. Furthermore, we hybridized these 2D materials with nanofibrous polyaniline (PANI) to study the impact of MX2 materials on its capacitance performance. All the fabricated nanocomposites exhibited a greatly enhanced capacitance compared with the pure PANI, with the highest increase observed for MoTe2/PANI (499 F g(-1)), which represents a 76% increase. This enhancement arises from the promotion of available active surface area of PANI and MoTe2 for electrolyte ions. (C) 2019 Published by Elsevier Ltd.
引用
收藏
页码:280 / 289
页数:10
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