Xiaoyong Deng
Lanzhou University
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Featured researches published by Xiaoyong Deng.
Chemosphere | 2016
Xiuwen Cheng; Qingfeng Cheng; Xiaoyong Deng; Pu Wang; Huiling Liu
TiO2 nano-materials have been considered as a versatile candidate for the photoelectrochemical (PECH) applications. In this study, we reported a facile and novel strategy to synthesize reduced TiO2 nanotubes (TiO2 NTs) photoelectrode. The microwave reduction could introduce oxygen vacancy in the lattice of TiO2, while the rapid-production of oxygen vacancy facilitated the generation of impurity level between the forbidden band and greatly enhancement of visible light absorption, thereby resulting in an improved separation efficiency of photogenerated charge carriers and photocatalytic (PC) performance. Additionally, the derived valence band X-ray photoelectron spectroscopy (VBXPS) and photoluminescence (PL) spectra confirmed the existence of oxygen vacancy in the lattice of TiO2 NTs photoelectrode, in which the valence bond maximum (VBM) and charge carriers concentration of reduced TiO2 NTs photoelectrode was determined to be 1.75 eV and 5.36 × 10(19) cm(-3), respectively. Furthermore, the scavenging experiments revealed that ·OH radical was the dominated species for the degradation of diclofenac. The enhanced-visible-light PC mechanism could mainly be attributed to the generation of oxygen vacancy, which can provide not only the visible light absorption capacity but also charge separation efficiency.
Journal of Nanoscience and Nanotechnology | 2018
Huixuan Zhang; Xiaoyong Deng; Qiuling Ma; Yuqi Cui; Xiuwen Cheng; Mingzheng Xie; Xiaoli Li; Qingfeng Cheng
In this study, silver decorated graphene oxide (Ag/GO) composite was fabricated through a reduction process in the presence of potassium borohydride solution. Subsequently, physicochemical properties of the resulting Ag/GO composite were studied by scanning electron microscope, X-ray diffraction, Raman spectra, Fourier transformation infrared spectroscopy and UV-visible diffuse reflectance spectrum. Results indicated that Ag species existed in the form of Ag0, which greatly facilitated the visible light absorbance ability. Furthermore, the performance of Ag/GO was evaluated by PC inactiviation of Escherichia coli under Xenon lamp illumination. It was found that Ag/GO sample could kill the Escherichia coli within 60 min illumination by the non-selective attack of ⋅OH radicals. This study provides a novel and facile strategy to fabricate high-efficient catalyst to kill the bacteria in drinking water treatment.
Electrochimica Acta | 2015
Xiuwen Cheng; Qingfeng Cheng; Xiaoyong Deng; Pu Wang; Huiling Liu
Applied Catalysis B-environmental | 2017
Yuqi Cui; Qiuling Ma; Xiaoyong Deng; Qi Meng; Xiuwen Cheng; Mingzheng Xie; Xiaoli Li; Qingfeng Cheng; Huiling Liu
Chemical Engineering Journal | 2017
Jianfeng Gou; Qiuling Ma; Xiaoyong Deng; Yuqi Cui; Huixuan Zhang; Xiuwen Cheng; Xiaoli Li; Mingzheng Xie; Qingfeng Cheng
Electrochimica Acta | 2015
Xiuwen Cheng; Qingfeng Cheng; Bo Li; Xiaoyong Deng; Junjing Li; Pu Wang; Baoqing Zhang; Huiling Liu; Xiaoning Wang
Separation and Purification Technology | 2015
Xiuwen Cheng; Xiaoyong Deng; Pu Wang; Huiling Liu
Applied Surface Science | 2017
Xiaoyong Deng; Qiuling Ma; Yuqi Cui; Xiuwen Cheng; Qingfeng Cheng
Journal of Industrial and Engineering Chemistry | 2017
Jianfeng Gou; Qiuling Ma; Yuqi Cui; Xiaoyong Deng; Huixuan Zhang; Xiuwen Cheng; Xiaoli Li; Mingzheng Xie; Qingfeng Cheng; Huiling Liu
Separation and Purification Technology | 2017
Xiaoyong Deng; Qiuling Ma; Yuqi Cui; Huixuan Zhang; Xiuwen Cheng; Xiaoli Li; Mingzheng Xie; Qingfeng Cheng; Bo Li