Metal-polymer hybrid chemiresistive sensor for low concentration fast hydrogen detection

氢传感器 单层 聚合物 纳米晶 材料科学 纳米技术 金属 氧气 检出限 化学工程 化学 催化作用 有机化学 冶金 复合材料 工程类 色谱法
作者
Christina E. Antony,S. G. Praveen,Adithya Jayakumar,K. Gaana,Akhilesh Yadav,Nikhil S. Sivakumar,Niranjan Kamath,M. N. Suma,Vinayak B. Kamble,D. Jaiswal‐Nagar
出处
期刊:Cornell University - arXiv
标识
DOI:10.48550/arxiv.2011.07599
摘要

Low concentration hydrogen gas detection is of paramount importance both in space applications as well as medical applications. It is also critically important for safe handling of hydrogen below the explosive limit. Here, we report a novel hybrid Pd metal-polymer chemiresistive sensor that can sense 0.5% hydrogen ($H_2$) gas in ambient conditions of temperature and pressure with the highest reported sensitivity($\sim$30%) obtained earlier by a physical deposition technique, making it an extremely good sensor for real life low concentration hydrogen gas detection. The sensor is easy to fabricate and is also extremely cost-effective for commercial applications. The obtained hybrid chemiresistive sensor comprises palladium (Pd) nanocrystals bound by oxygen and nitrogen atoms of a stabilizer Polyvinylepyrollidone (PVP), grown on top of a selfassembled monolayer. The exceptional rise time-constant is proposed to arise from hydrogen loading at the (111) surface of the palladium nanocrystal which is a very fast process and subsequent fast diffusion of the H atoms from the surface into the bulk. An effort to increase the number of available sites by UV-ozone cleaning, resulted in a degradation of the sensing device due to the poisoning of the available sites by oxygen.
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