纳米针
纳米化学
紫外线
材料科学
异质结
纳米技术
探测器
光电子学
光学
纳米结构
物理
作者
Qinghao Li,Lin Wei,Yanru Xie,Kai Zhang,Lei Liu,Dapeng Zhu,Jun Jiao,Yanxue Chen,Shishen Yan,Guolei Liu,Liangmo Mei
标识
DOI:10.1186/1556-276x-8-415
摘要
ZnO nanoneedle arrays were grown vertically on a fluorine-doped tin oxide-coated glass by hydrothermal method at a relatively low temperature. A self-powered photoelectrochemical cell-type UV detector was fabricated using the ZnO nanoneedles as the active photoanode and H2O as the electrolyte. This solid-liquid heterojunction offers an enlarged ZnO/water contact area and a direct pathway for electron transport simultaneously. By connecting this UV photodetector to an ammeter, the intensity of UV light can be quantified using the output short-circuit photocurrent without a power source. High photosensitivity, excellent spectral selectivity, and fast photoresponse at zero bias are observed in this UV detector. The self-powered behavior can be well explained by the formation of a space charge layer near the interface of the solid-liquid heterojunction, which results in a built-in potential and makes the solid-liquid heterojunction work in photovoltaic mode.
科研通智能强力驱动
Strongly Powered by AbleSci AI