纳米线
材料科学
半导体
激光器
光电子学
光子学
纳米技术
光电探测器
可控性
光学
物理
数学
应用数学
作者
Jing Long,Wei Xiong,Chengyiran Wei,Chengchangfeng Lu,Ruiqing Wang,Chunsan Deng,Huan Liu,Xuhao Fan,Binzhang Jiao,Shan Gao,Leimin Deng
出处
期刊:Nano Letters
[American Chemical Society]
日期:2020-06-01
卷期号:20 (7): 5159-5166
被引量:38
标识
DOI:10.1021/acs.nanolett.0c01378
摘要
The precise placement of semiconductor nanowires (NWs) into two- or three-dimensional (2D/3D) micro-/nanoarchitectures is a key for the construction of integrated functional devices. However, long-pending challenges still exist in high-resolution 3D assembly of semiconductor NWs. Here, we have achieved directional assembly of zinc oxide (ZnO) NWs into nearly arbitrary 3D architectures with high spatial resolution using two-photon polymerization. The NWs can regularly align in any desired direction along the laser scanning pathway. Through theoretical calculation and control experiments, we unveiled the laser-induced assembly mechanism and found that the nonoptical forces are the dominant factor leading to the directional assembly of ZnO NWs. A ZnO-NW-based polarization-resolved UV photodetector of excellent photoresponsivity was fabricated to demonstrate the potential application of the assembled ZnO NWs. This work is expected to promote the research on NW-based integrated devices such as photonic integrated circuits, sensors, and metamaterial with unprecedented controllability of the NW's placement in three dimensions.
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