Fanyan Zeng
Jiangxi Normal University
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Publication
Featured researches published by Fanyan Zeng.
ACS Applied Materials & Interfaces | 2015
Yong Yang; Yan Liang; Guozhong Wang; Liangliang Liu; Cailei Yuan; Ting Yu; Qinliang Li; Fanyan Zeng; Gang Gu
Anatase hierarchical TiO2 with innovative designs (hollow microspheres with exposed high-energy {001} crystal facets, hollow microspheres without {001} crystal facets, and solid microspheres without {001} crystal facets) were synthesized via a one-pot hydrothermal method and characterized. Based on these materials, gas sensors were fabricated and used for gas-sensing tests. It was found that the sensor based on hierarchical TiO2 hollow microspheres with exposed high-energy {001} crystal facets exhibited enhanced acetone sensing properties compared to the sensors based on the other two materials due to the exposing of high-energy {001} crystal facets and special hierarchical hollow structure. First-principle calculations were performed to illustrate the sensing mechanism, which suggested that the adsorption process of acetone molecule on TiO2 surface was spontaneous, and the adsorption on high-energy {001} crystal facets would be more stable than that on the normally exposed {101} crystal facets. Further characterization indicated that the {001} surface was highly reactive for the adsorption of active oxygen species, which was also responsible for the enhanced sensing performance. The present studies revealed the crystal-facets-dependent gas-sensing properties of TiO2 and provided a new insight into improving the gas sensing performance by designing hierarchical hollow structure with special-crystal-facets exposure.
Talanta | 2015
Yang Pan; Zhaohui Hou; Wei Yi; Wei Zhu; Fanyan Zeng; You-Nian Liu
Hierarchical hybrid films of MnO2 nanoparticles/multi-walled fullerene nanotubes-graphene (MNPs/MWFNTs-GS) have been prepared via a simple wet-chemical method. For this purpose, MWFNTs (~300nm in length) are fabricated from tailoring multi-walled carbon nanotubes (MWCNTs), and then inserted into GS to pile up into a hierarchical hybrid film with the in situ formative MNPs. Scanning electron microscope, transmission electron microscope and X-ray diffraction are used to confirm the morphology and structure of the as-obtained film. The electrochemical studies reveal that MNPs/MWFNTs-GS exhibit significantly enhanced electrocatalytic activity compared with MNPs/GS, and show a rapid response to H2O2 over a wide linear range of 2.0μM-8.44mM with a high sensitivity of 206.3μA mM(-1)cm(-2) and an excellent selectivity. These favorable electrochemical detection properties may be mainly attributed to the introduction of MWFNTs, which helps to promote the electron/ion transport between MNPs and GS and form the hierarchical film structure.
Electrochimica Acta | 2016
Fanyan Zeng; Yang Pan; Yong Yang; Qinliang Li; Gangyong Li; Zhaohui Hou; Gang Gu
Sensors and Actuators B-chemical | 2017
Keng Xu; Jingping Zou; Shouqin Tian; Yong Yang; Fanyan Zeng; Ting Yu; Yuting Zhang; Xiaomeng Jie; Cailei Yuan
Journal of Materials Science | 2017
Yaohui Qu; Yimin Deng; Qiang Li; Zhian Zhang; Fanyan Zeng; Yong Yang; Keng Xu
Applied Surface Science | 2017
Yong Yang; Aijun Hong; Yan Liang; Keng Xu; Ting Yu; Jing Shi; Fanyan Zeng; Yaohui Qu; Yanting Liu; Mengqi Ding; Wen Zhang; Cailei Yuan
Materials Letters | 2018
Manman Guo; Liubo Wei; Yaohui Qu; Fanyan Zeng; Cailei Yuan
Electrochimica Acta | 2018
Manman Guo; Keng Xu; Yaohui Qu; Fanyan Zeng; Cailei Yuan
Journal of Physical Chemistry C | 2017
Cailei Yuan; Yaxing Mei; Aijun Hong; Ting Yu; Yong Yang; Fanyan Zeng; Keng Xu; Qinliang Li; Xingfang Luo; Jun He; Wen Lei
Journal of Alloys and Compounds | 2018
Fanyan Zeng; Xiaoxue Zhang; Yang Pan; Meng Xu; Leyan Yang; Yaohui Qu; Manman Guo; Cailei Yuan