Hierarchically Porous Zno Derived from Zeolitic Imidazolate Frameworks for High-Sensitive Mems No2 Sensor

17 Pages Posted: 17 Oct 2022

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Dan Zhang

Shanghai University

Na Luo

Shanghai University

Zhenggang Xue

Shanghai University

Yueling Bai

Shanghai University

Jiaqiang Xu

Shanghai University

Multiple version iconThere are 2 versions of this paper

Abstract

Three-dimensional (3D) porous metal oxide nanomaterials with controllable morphology and well-defined pore size have attracted extensive attention in the field of gas sensing. Herein, hierarchically porous ZnO-450 was obtained simply by annealing Zeolitic Imidazolate Frameworks (ZIF-90) microcrystals at an optimal temperature of 450°C, and the effect of annealing temperature on the formation of porous nanostructure was discussed. Then the as-obtained ZnO-450 was employed as sensing materials to construct a Micro-Electro-Mechanical System (MEMS) gas sensor for detecting NO 2 . The MEMS sensor based on ZnO-450 displays the excellent gas-sensing performances at a low working temperature (190°C), such as high response value (242.18% @ 10 ppm), short response/recovery time (9/26 s) and ultralow limit of detection (0.05 ppm). The ZnO-450 sensor shows better sensing performance for NO 2 detection than ZnO-based composites materials or commercial ZnO nanoparticles (NPs), which are attributed to its unique hierarchically structures with high porosity and larger surface area. This ZIFs driven strategy can be expected to pave a new pathway for the design of high-performance NO 2 sensors.

Keywords: Hierarchically porous ZnO, Zeolitic imidazolate frameworks, MEMS gas sensor, NO2

Suggested Citation

Zhang, Dan and Luo, Na and Xue, Zhenggang and Bai, Yueling and Xu, Jiaqiang, Hierarchically Porous Zno Derived from Zeolitic Imidazolate Frameworks for High-Sensitive Mems No2 Sensor. Available at SSRN: https://ssrn.com/abstract=4250261 or http://dx.doi.org/10.2139/ssrn.4250261

Dan Zhang

Shanghai University ( email )

149 Yanchang Road
SHANGDA ROAD 99
Shanghai 200072, 200444
China

Na Luo

Shanghai University ( email )

149 Yanchang Road
SHANGDA ROAD 99
Shanghai 200072, 200444
China

Zhenggang Xue

Shanghai University ( email )

149 Yanchang Road
SHANGDA ROAD 99
Shanghai 200072, 200444
China

Yueling Bai

Shanghai University ( email )

149 Yanchang Road
SHANGDA ROAD 99
Shanghai 200072, 200444
China

Jiaqiang Xu (Contact Author)

Shanghai University ( email )

149 Yanchang Road
SHANGDA ROAD 99
Shanghai 200072, 200444
China

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