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首页> 外文期刊>Photonics and Nanostructures: Fundamentals and Applications >Optical dynamic range maximization for humidity sensing by controlling growth of zinc oxide nanorods
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Optical dynamic range maximization for humidity sensing by controlling growth of zinc oxide nanorods

机译:通过控制氧化锌纳米棒的生长来实现湿度检测的光学动态范围最大化

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摘要

An experimental study of the dynamic range maximization with Zinc Oxide (ZnO) nanorods coated glass substrates for humidity and vapor sensing is reported. Growth time of the nanorods and the length of the coated segments were controlled to study the differences between a reference environmental condition (normal humidity or dry condition) and water vapor concentrations. In order to achieve long dynamic range of detection with respect to nanorods coverage, several substrates with triangular patterns of ZnO nanostructures were fabricated by selective hydrothermal growth over different durations of time (5?h, 10?h and 15?h). It was found that maximum dynamic range for the humidity sensing occurs for the combination parameters of normalized length (Z) of 0.23 and normalized scattering coefficient (ζ) of 0.3. A reduction in transmittance by 38% at humidity levels of 80% with reference point as 50% humidity was observed. The results could be correlated to a first order approximation model that assumes uniform growth and the optimum operating conditions for humidity sensing device. This study provides an option to correlate ZnO growth conditions for different vapor sensing applications which can set a platform for compact sensors where modulation of light intensity is followed.
机译:据报道了对氧化锌(ZnO)纳米棒涂覆玻璃基板进行湿度和蒸汽感测的动态范围最大化的实验研究。控制纳米棒的生长时间和涂覆段的长度,以研究参考环境条件(正常湿度或干燥条件)和水蒸气浓度之间的差异。为了实现相对于纳米棒覆盖的长动态检测范围,通过选择性水热生长在不同的时间内选择性水热生长来制造具有三角形图案的几个基板(5?H,10?H和15≤H)。结果发现,湿度感测的最大动态范围发生在0.23的归一化长度(Z)的组合参数和0.3的标准化散射系数(ζ)的组合参数。观察到湿度在80%的湿度水平下的透射率降低38%,参考点为50%湿度。结果可以与假设均匀生长和湿度传感装置的最佳操作条件相关的第一阶近似模型相关。本研究提供了一种能够为不同的蒸汽传感应用相关的选项,该应用可以为紧凑型传感器设定一个平台,其中遵循调制光强度。

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