Mof-Derived Sno2 Nanoparticles for Realization of Ultrasensitive and Highly Selective No2 Gas Sensing
实现(概率)
纳米颗粒
纳米技术
材料科学
化学
数学
统计
作者
Sanjit Manohar Majhi,Jin‐Young Kim,Ali Mirzaei,Sandeep G. Surya,Hyoun Woo Kim,Sang Sub Kim
标识
DOI:10.2139/ssrn.4672804
摘要
Herein, SnO2 nanoparticles (NPs) were synthesized from a Sn-metal organic framework (MOF) using a hydrothermal synthesis approach for NO2 gas sensing studies. The desired phase and composition of the SnO2 NPs were demonstrated based on the characterization results. The individual sizes of SnO2 NPs were ~20-30 nm, and they had a high surface area (185.31 m2/g). The sensing properties were measured at various temperatures towards NO2 gas. It showed very high responses of 240.60 and 3984.98 to 10 and 100 ppm NO2 gas, respectively, at 200°C. Also, it still displayed a high response of 47.11 to 100 ppm NO2 gas at 25°C. Enhanced response of MOF-derived SnO2 NPs gas sensor was due to the high surface area of the SnO2 NPs, the presence of oxygen vacancies, formation of plenty of SnO2-SnO2 homojunctions and the formation of SnO/SnO2 heterojunctions. The synthesis method employed in this study led to the preparation of high surface area SnO2 NPs that can be used for preparing other metal oxides for the development of gas sensors.