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Analysis of the Sensing Properties of a Highly Stable and Reproducible Ozone Gas Sensor Based on Amorphous In-Ga-Zn-O Thin Film

机译:基于非晶态In-Ga-Zn-O薄膜的高度稳定且可重现的臭氧气体传感器的传感特性分析

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摘要

In this study, the sensing properties of an amorphous indium gallium zinc oxide (a-IGZO) thin film at ozone concentrations from 500 to 5 ppm were investigated. The a-IGZO thin film showed very good reproducibility and stability over three test cycles. The ozone concentration of 60–70 ppb also showed a good response. The resistance change (ΔR) and sensitivity (S) were linearly dependent on the ozone concentration. The response time (T90-res), recovery time (T90-rec), and time constant (τ) showed first-order exponential decay with increasing ozone concentration. The resistance–time curve shows that the maximum resistance change rate (dRg/dt) is proportional to the ozone concentration during the adsorption. The results also show that it is better to sense rapidly and stably at a low ozone concentration using a high light intensity. The ozone concentration can be derived from the resistance change, sensitivity, response time, time constant (τ), and first derivative function of resistance. However, the time of the first derivative function of resistance is shorter than other parameters. The results show that a-IGZO thin films and the first-order differentiation method are promising candidates for use as ozone sensors for practical applications.
机译:在这项研究中,研究了臭氧浓度为500至5 ppm的非晶铟镓锌氧化物(a-IGZO)薄膜的传感特性。在三个测试周期中,a-IGZO薄膜显示出非常好的重现性和稳定性。 60-70 ppb的臭氧浓度也显示出良好的响应。电阻变化(ΔR)和灵敏度(S)与臭氧浓度线性相关。随着臭氧浓度的增加,响应时间(T90-res),恢复时间(T90-rec)和时间常数(τ)显示出一阶指数衰减。电阻-时间曲线表明,最大电阻变化率(dRg / dt)与吸附过程中的臭氧浓度成正比。结果还表明,在高臭氧强度下以低臭氧浓度快速稳定地进行检测更好。臭氧浓度可以从电阻变化,灵敏度,响应时间,时间常数(τ)和电阻的一阶导数得出。但是,电阻的一阶导数函数的时间比其他参数短。结果表明,a-IGZO薄膜和一阶微分方法有望成为实际应用中的臭氧传感器。

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