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ZnO Nanoneedle/H2O Solid-Liquid Heterojunction-Based Self-Powered Ultraviolet Detector

机译:ZnO纳米针/ H2O固液异质结自供电紫外探测器

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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.
机译:ZnO纳米针阵列在较低温度下通过水热法在掺氟氧化锡涂层的玻璃上垂直生长。使用ZnO纳米针作为活性光阳极,H2O作为电解质,制备了自供电的光电化学电池型紫外线检测器。这种固-液异质结提供了更大的ZnO /水接触面积,并同时为电子传输提供了直接途径。通过将此紫外线光电检测器连接到电流表,可以在没有电源的情况下使用输出短路光电流来量化紫外线强度。在该紫外检测器中观察到了高光敏性,出色的光谱选择性和零偏压下的快速光响应。可以通过在固液异质结界面附近形成空间电荷层来很好地解释自供电行为,这会产生内置电势并使固液异质结以光伏模式工作。

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