Ternary composite Si/TiN/MnO2 taper nanorod array for on-chip supercapacitor

被引:32
作者
Lu, Pai [1 ]
Halvorsen, Einar [1 ]
Ohlckers, Per [1 ]
Mueller, Lutz [2 ]
Leopold, Steffen [2 ]
Hoffmann, Martin [2 ]
Grigoras, Kestutis [3 ]
Ahopelto, Jouni [3 ]
Prunnila, Mika [3 ]
Chen, Xuyuan [1 ]
机构
[1] Univ Coll Southeast Norway, Dept Micro & Nanosyst Technol, Campus Vestfold,Raveien 215, N-3184 Borre, Norway
[2] Tech Univ Ilmenau, Micromech Syst Grp, IMN MacroNano, PF 100565, D-98694 Ilmenau, Germany
[3] VTT Tech Res Ctr Finland Ltd, POB 1000, FI-02044 Espoo, Finland
基金
芬兰科学院;
关键词
Taper nanorod array; On-chip supercapacitor; Deep reactive ion etch; Atomic layer deposition; Solution chemical deposition; PERFORMANCE MICRO-SUPERCAPACITORS; SILICON NANOWIRE ELECTRODES; ALL-SOLID-STATE; TITANIUM NITRIDE; CARBON-FILMS; ENERGY; MNO2; MICROSUPERCAPACITORS; FABRICATION; CAPACITOR;
D O I
10.1016/j.electacta.2017.07.162
中图分类号
O646 [电化学、电解、磁化学];
学科分类号
081704 ;
摘要
We present a ternary composite Si/TiN/MnO2 taper nanorod array electrode for large specific capacitance on-chip supercapacitor. The capacitor is based on conformal deposition of pseudo-capacitive MnO2 nano-layer and TiN current collector nano-layer on a silicon taper nanorod array (Si-TNR) scaffold. The key fabrication processes include cyclic deep reactive ion etch (DRIE) of silicon, atomic layer deposition (ALD) of TiN, as well as solution chemical deposition of MnO2. Different growth modes of MnO2 functional layers via electrochemical deposition (ED) and electroless chemical deposition (CD) are investigated in terms of thickness, morphology, and conformality. Optimization of the supercapacitor performance by controlling the loading amount of pseudo-capacitive layer on taper nanorod array scaffold is demonstrated. The electrode design targeting taper nanorod array enables improved and effective mass loading of active material towards high specific capacitance. The obtained Si-TNR/TiN/MnO2 electrode offers areal specific capacitance of 81.6 mF cm(-2) as evaluated at 5 mV s(-1) scan rate (41.3 mF cm(-2) at 200 mV s(-1)), showing similar to 70 times improvement in areal capacitance compared to that of the Si-TNR/TiN electrode. (C) 2017 Elsevier Ltd. All rights reserved.
引用
收藏
页码:397 / 408
页数:12
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