Xiang Ying, Li Baoping, Fan Yitao, Zhang Miaomiao, Wu Wenxuan, Wang Ze, Liu Minghui, Qiao Hu, Wang Youqing
College of Mechanical and Electrical Engineering, Shaanxi University of Science and Technology, Xi'an 710021, China.
The Youth Innovation Team of Shaanxi Universities, Shaanxi University of Science and Technology, Xi'an 710021, China.
Nanomaterials (Basel). 2023 Jul 17;13(14):2086. doi: 10.3390/nano13142086.
UV transparent conductive electrodes based on transferable ITO nanowire networks were prepared to solve the problem of low UV light utilization in conventional photoelectrochemical UV detectors. The mutually cross-linked ITO nanowire network achieved good electrical conductivity and light transmission, and the novel electrode had a transmission rate of more than 80% throughout the near-UV and visible regions. Compared to Ag nanowire electrodes with similar functionality, the chemical stability of the ITO nanowire transparent conductive electrode ensured that the device worked stably in iodine-based electrolytes. More importantly, ITO electrodes composed of oxides could withstand temperatures above 800 °C, which is extremely critical for photoelectrochemical devices. After the deposition of a TiO active layer using the high-temperature method, the response range of the photoelectrochemical UV detector was extended from a peak-like response between 300-400 nm to a plateau-like response between 200-400 nm. The responsivity was significantly increased to 56.1 mA/W. The relationship between ITO nanowire properties and device performance, as well as the reasons for device performance enhancement, were intensively investigated.
制备了基于可转移ITO纳米线网络的紫外透明导电电极,以解决传统光电化学紫外探测器中紫外光利用率低的问题。相互交联的ITO纳米线网络实现了良好的导电性和透光性,这种新型电极在近紫外和可见光区域的透过率均超过80%。与具有类似功能的银纳米线电极相比,ITO纳米线透明导电电极的化学稳定性确保了该器件在碘基电解质中稳定工作。更重要的是,由氧化物组成的ITO电极能够承受800℃以上的温度,这对光电化学器件来说至关重要。采用高温方法沉积TiO活性层后,光电化学紫外探测器的响应范围从300 - 400nm之间的峰状响应扩展到200 - 400nm之间的平台状响应。响应度显著提高到56.1 mA/W。深入研究了ITO纳米线性能与器件性能之间的关系以及器件性能增强的原因。