3D hierarchical assembly of ultrathin MnO2 nanoflakes on silicon nanowires for high performance micro-supercapacitors in Li- doped ionic liquid

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作者
Deepak P. Dubal
David Aradilla
Gérard Bidan
Pascal Gentile
Thomas J.S. Schubert
Jan Wimberg
Saïd Sadki
Pedro Gomez-Romero
机构
[1] Catalan Institute of Nanoscience and Nanotechnology,
[2] CIN2,undefined
[3] ICN2 (CSIC-ICN),undefined
[4] Campus UAB,undefined
[5] Univ. Grenoble Alpes,undefined
[6] INAC-SPRAM,undefined
[7] CNRS,undefined
[8] SPRAM,undefined
[9] CEA,undefined
[10] INAC-SPRAM,undefined
[11] F-38000 Grenoble,undefined
[12] Univ. Grenoble Alpes,undefined
[13] INAC-DIR,undefined
[14] F-38000 Grenoble,undefined
[15] France,undefined
[16] CEA,undefined
[17] INAC-DIR F-38000,undefined
[18] Univ. Grenoble Alpes,undefined
[19] INAC-SP2M-SiNaPs,undefined
[20] F-38000 Grenoble,undefined
[21] CEA,undefined
[22] INAC-SP2M-SiNaPS,undefined
[23] F-38000 Grenoble,undefined
[24] IOLITEC Ionic Liquids Technologies GmbH,undefined
[25] Salzstrasse 184,undefined
[26] Consejo Superior de Investigaciones Científicas (CSIC),undefined
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摘要
Building of hierarchical core-shell hetero-structures is currently the subject of intensive research in the electrochemical field owing to its potential for making improved electrodes for high-performance micro-supercapacitors. Here we report a novel architecture design of hierarchical MnO2@silicon nanowires (MnO2@SiNWs) hetero-structures directly supported onto silicon wafer coupled with Li-ion doped 1-Methyl-1-propylpyrrolidinium bis(trifluromethylsulfonyl)imide (PMPyrrBTA) ionic liquids as electrolyte for micro-supercapacitors. A unique 3D mesoporous MnO2@SiNWs in Li-ion doped IL electrolyte can be cycled reversibly across a voltage of 2.2 V and exhibits a high areal capacitance of 13 mFcm−2. The high conductivity of the SiNWs arrays combined with the large surface area of ultrathin MnO2 nanoflakes are responsible for the remarkable performance of these MnO2@SiNWs hetero-structures which exhibit high energy density and excellent cycling stability. This combination of hybrid electrode and hybrid electrolyte opens up a novel avenue to design electrode materials for high-performance micro-supercapacitors.
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