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Dive into the research topics where Xiangxiang Chen is active.

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Featured researches published by Xiangxiang Chen.


Journal of Materials Chemistry | 2016

Nitrogen dioxide sensing using tungsten oxide microspheres with hierarchical nanorod-assembled architectures by a complexing surfactant-mediated hydrothermal route

Yanbai Shen; Wei Wang; Xiangxiang Chen; Baoqing Zhang; Dezhou Wei; Shuling Gao; Baoyu Cui

WO3 microspheres with hierarchical nanorod-assembled architectures were successfully synthesized by a complexing surfactant-mediated hydrothermal method in the presence of K2SO4 and H2C2O4 with a molar ratio of 1 : 1. Microstructural characterization by means of X-ray diffraction, scanning electron microscopy and transmission electron microscopy showed that WO3 microspheres with diameters ranging from 3 to 5 μm were assembled by 90 nm diameter nanorods and had a single crystal hexagonal structure. The analysis results of the elemental composition and chemical state demonstrated that the obtained WO3 microspheres were nearly stoichiometric. Based on the experimental results, a possible growth mechanism consisting of nucleation, Ostwald ripening, and self-assembly of WO3 crystals was proposed. Gas sensing properties demonstrated that WO3 microspheres exhibited not only a high response and excellent reversibility to NO2, but also a good linear relationship between the response and NO2 concentration in the range of 1 to 10 ppm. The response and recovery times significantly decreased as the operating temperature increased gradually. The highest response of 790 to 20 ppm NO2 was obtained at a relatively low operating temperature of 100 °C, which revealed that WO3 microspheres were very promising for fabricating low-consumption chemical gas sensors. The electron depletion theory was used for explaining the gas sensing mechanism by the chemical adsorption and reaction of NO2 gas molecules on the surface of WO3 microspheres.


Materials Letters | 2016

Complexing surfactants-mediated hydrothermal synthesis of WO3 microspheres for gas sensing applications

Yanbai Shen; Xiangxiang Chen; Wei Wang; Yue Gong; Sihan Chen; Jintong Liu; Dezhou Wei; Dan Meng; Xiaoguang San


Journal of Alloys and Compounds | 2016

Highly sensitive and selective room temperature alcohol gas sensors based on TeO2 nanowires

Yanbai Shen; Sikai Zhao; Jiawei Ma; Xiangxiang Chen; Wei Wang; Dezhou Wei; Shuling Gao; Wengang Liu; Cong Han; Baoyu Cui


Ceramics International | 2018

Highly selective NO2 sensor based on p-type nanocrystalline NiO thin films prepared by sol–gel dip coating

Sikai Zhao; Yanbai Shen; Pengfei Zhou; Jin Zhang; Wei Zhang; Xiangxiang Chen; Dezhou Wei; Ping Fang; Yansong Shen


Applied Surface Science | 2018

Low-temperature and highly enhanced NO 2 sensing performance of Au-functionalized WO 3 microspheres with a hierarchical nanostructure

Yanbai Shen; Hongshan Bi; Tingting Li; Xiangxi Zhong; Xiangxiang Chen; Anfeng Fan; Dezhou Wei


Sensors and Actuators B-chemical | 2016

Ethanol sensing properties of TeO2 thin films prepared by non-hydrolytic sol–gel process

Yanbai Shen; Xiuxiu Yan; Sikai Zhao; Xiangxiang Chen; Dezhou Wei; Shuling Gao; Cong Han; Dan Meng


Applied Surface Science | 2018

In-situ growth of ZnO nanowire arrays on the sensing electrode via a facile hydrothermal route for high-performance NO2 sensor

Xiangxiang Chen; Yanbai Shen; Wei Zhang; Jin Zhang; Dezhou Wei; Rui Lu; Lijia Zhu; Hansen Li; Yansong Shen


Sensors and Actuators B-chemical | 2019

NO2 sensing properties of one-pot-synthesized ZnO nanowires with Pd functionalization

Xiangxiang Chen; Yanbai Shen; Pengfei Zhou; Sikai Zhao; Xiangxi Zhong; Tingting Li; Cong Han; Dezhou Wei; Dan Meng


Vacuum | 2018

Fabrication of shrub-like CuO porous films by a top-down method for high-performance ethanol gas sensor

Cong Han; Xiangxiang Chen; Daoxi Liu; Pengfei Zhou; Sikai Zhao; Hongshan Bi; Dan Meng; Dezhou Wei; Yanbai Shen


Ceramics International | 2018

SO2 sensing properties of SnO2 nanowires grown on a novel diatomite-based porous substrate

Xiangxi Zhong; Yanbai Shen; Sikai Zhao; Xiangxiang Chen; Cong Han; Dezhou Wei; Ping Fang; Dan Meng

Collaboration


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Dezhou Wei

Northeastern University

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Yanbai Shen

Northeastern University

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Sikai Zhao

Northeastern University

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Cong Han

Northeastern University

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Dan Meng

Shenyang University of Chemical Technology

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Pengfei Zhou

Northeastern University

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Shuling Gao

Northeastern University

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Tingting Li

Northeastern University

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Wei Wang

Northeastern University

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Yansong Shen

University of New South Wales

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