Key Laboratory of Physical Electronics and Devices for Ministry of Education and Shaanxi Provincial Key Laboratory of Photonics & Information Technology, Xi'an Jiaotong University, Xi'an, Shaanxi, 710049, P. R. China.
School of Electronic and Information Engineering, Xi'an Jiaotong University, Xi'an, Shaanxi, 710049, P. R. China.
Sci Rep. 2019 Mar 21;9(1):4983. doi: 10.1038/s41598-019-41579-2.
A 3D ITO nanowire network with high quality by using polystyrene as an assisted material has been prepared, demonstrating superior optoelectronic performances with a sheet resistance of 193 Ω/sq at 96% transmission. Both remarkable flexibility tested under bending stress and excellent adhesion applied on special terrain substrate have been achieved. This method has led to a full coverage of micro-holes at a depth of 18 µm and a bottom spacing of only 1 µm, as well as a perfect gap-free coverage for micro-tubes and pyramid array. It has been proved that this 3D ITO nanowire network can be used as a transparent conductive layer for optoelectronic devices with any topography surface. Through the application on the micro-holes, -tubes and -pyramid array, some new characteristics of the 3D ITO nanowires in solar cells, sensors, micro-lasers and flexible LEDs have been found. Such 3D ITO nanowire networks could be fabricated directly on micro-irregular substrates, which will greatly promote the application of the heterotypic devices.
通过使用聚苯乙烯作为辅助材料,制备出具有高质量的 3D ITO 纳米线网络,其光电性能优异,透光率为 96%时的方阻为 193 Ω/sq。该网络具有优异的柔韧性,可承受弯曲应力,同时具有良好的附着力,可应用于特殊地形基底。该方法实现了对深 18 μm、底部间距仅 1 μm 的微孔的全覆盖,以及对微管和金字塔阵列的完美无间隙覆盖。已证明这种 3D ITO 纳米线网络可用作具有任何形貌表面的光电设备的透明导电层。通过在微孔、微管和金字塔阵列上的应用,发现了 3D ITO 纳米线在太阳能电池、传感器、微激光器和柔性 LED 中的一些新特性。这种 3D ITO 纳米线网络可以直接在微不规则基底上制造,这将极大地推动异质设备的应用。