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Optimization of Perovskite Gas Sensor Performance: Characterization Measurement and Experimental Design

机译:钙钛矿型气体传感器性能的优化:表征测量和实验设计

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摘要

Eight different types of nanostructured perovskites based on YCoO3 with different chemical compositions are prepared as gas sensor materials, and they are studied with two target gases NO2 and CO. Moreover, a statistical approach is adopted to optimize their performance. The innovative contribution is carried out through a split-plot design planning and modeling, also involving random effects, for studying Metal Oxide Semiconductors (MOX) sensors in a robust design context. The statistical results prove the validity of the proposed approach; in fact, for each material type, the variation of the electrical resistance achieves a satisfactory optimized value conditional to the working temperature and by controlling for the gas concentration variability. Just to mention some results, the sensing material YCo0.9Pd0.1O3 (Mt1) achieved excellent solutions during the optimization procedure. In particular, Mt1 resulted in being useful and feasible for the detection of both gases, with optimal response equal to +10.23% and working temperature at 312 C for CO (284 ppm, from design) and response equal to −14.17% at 185 C for NO2 (16 ppm, from design). Analogously, for NO2 (16 ppm, from design), the material type YCo0.9O2.85 + 1%Pd (Mt8) allows for optimizing the response value at −15.39% with a working temperature at 181.0 C, whereas for YCo0.95Pd0.05O3 (Mt3), the best response value is achieved at −15.40% with the temperature equal to 204 C.
机译:制备了八种不同化学组成的,基于YCoO3的纳米结构钙钛矿作为气体传感器材料,并用两种目标气体NO2和CO对其进行了研究。此外,采用统计方法优化了它们的性能。该创新的贡献是通过分割图设计规划和建模(还涉及随机效应)进行的,用于在稳健的设计环境中研究金属氧化物半导体(MOX)传感器。统计结果证明了该方法的有效性。实际上,对于每种材料类型,电阻的变化都可以根据工作温度并通过控制气体浓度的变化来达到令人满意的优化值。仅提及一些结果,感测材料YCo0.9Pd0.1O3(Mt1)在优化过程中获得了出色的解决方案。尤其是,Mt1对两种气体的检测都是有用且可行的,其最佳响应等于+ 10.23%,CO的工作温度为312 C(设计中为284 ppm)和响应等于NO1在185 下的-14.17%(16 ppm,根据设计)。类似地,对于NO2(设计为16 ppm),材料类型YCo0.9O2.85 + 1%Pd(Mt8)允许在工作温度为181.0 C,而对于YCo0.95Pd0.05O3(Mt3),当温度等于204 C时,最佳响应值为-15.40%。

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