Automatic Release of Silicon Nanowire Arrays with a High Integrity for Flexible Electronic Devices

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作者
Luo Wu
Shuxin Li
Weiwei He
Dayong Teng
Ke Wang
Changhui Ye
机构
[1] Key Laboratory of Materials Physics,
[2] Institute of Solid State Physics and Key Laboratory of New Thin Film Solar Cells,undefined
[3] Chinese Academy of Sciences,undefined
来源
Scientific Reports | / 4卷
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摘要
Automatic release and vertical transferring of silicon/silicon oxide nanowire arrays with a high integrity are demonstrated by an Ag-assisted ammonia etching method. By adding a water steaming step between Ag-assisted HF/H2O2 and ammonia etching to form a SiOx protective layer sheathing Si nanowires, we can tune the composition of the nanowires from SiOx (0 ≤ x ≤ 2) to Si nanowires. Ag plays a key role to the neat and uniform release of Si/SiOx nanowire arrays from Si wafer in the ammonia etching process. The vertical Si nanowire array device, with both sides having high-quality Ohmic contact, can be transferred to arbitrary substrates, especially on a flexible substrate. The method developed here offers a facile method to realize flexible Si nanowire array functional devices.
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  • [1] Garnett E(2010)Light trapping in silicon nanowire solar cells Nano Lett. 10 1082-1087
  • [2] Yang PD(2010)Enhanced absorption and carrier collection in Si wire arrays for photovoltaic applications Nat. Mater. 9 239-244
  • [3] Kelzenberg MD(2011)Hybrid Si Microwire and planar solar cells: passivation and characterization Nano Lett. 11 2704-2708
  • [4] Kim DR(2008)Numerical characterization and optimization of the microfluidics for nanowire biosensors Nano Lett. 8 3233-3237
  • [5] Lee CH(2006)Nanowire-based biosensors Anal. Chem. 78 4260-4269
  • [6] Rao PM(2004)Sequence-specific label-free DNA sensors based on silicon nanowires Nano Lett. 4 245-247
  • [7] Cho IS(2005)Multiplexed electrical detection of cancer markers with nanowire sensor arrays Nat. Biotechnol. 23 1294-1301
  • [8] Zheng X(2004)Fabrication and characterization of a nanowire/polymer-based nanocomposite for a prototype thermoelectric device J. Microelectromech. Syst. 13 505-513
  • [9] Kim DR(2008)Enhanced thermoelectric performance of rough silicon nanowires Nature 451 163-167
  • [10] Zheng XL(2008)Silicon nanowires as efficient thermoelectric materials Nature 451 168-171