Wenqin Wu
Hubei University
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Publication
Featured researches published by Wenqin Wu.
Materials Science and Engineering: C | 2017
Wenqin Wu; Beibei Yu; Huimin Wu; Shengfu Wang; Qinghua Xia; Yu Ding
Different phases of cobalt sulfides have been fabricated by one-pot hydrothermal method. Comparing all of the prepared materials, and the results revealed that CoS was the most conductive and could accelerate electron transfer. The CoS presented tremella-like and excellent catalytic activities towards hydrogen peroxide and glucose. The sensor based on CoS performed amperometric sensing of hydrogen peroxide in a linear range between 5.00μM and 14.82mM. Meanwhile, sensing of glucose with double-linear range, one is between 5.00μM and 1.10mM, the other is between 1.20mM and 10.20mM. These due to the fact that more and more intermediate species absorb onto electrode surface with increasing the concentration of glucose, which limit the following glucose oxidation. Furthermore, the hydrogen peroxide and glucose sensors based on tremella-like CoS also exhibited excellent selectivity, stability, and reproducibility. Thus, the sensor showed potential utilities in hydrogen peroxide and glucose detection.
RSC Advances | 2015
He Mei; Huimin Wu; Wenqin Wu; Shengfu Wang; Qinghua Xia
A novel electrochemical assay based on PtNi/MWCNT nanocomposites was designed for ultrasensitive detection of hydrogen peroxide and glucose. The PtNi/MWCNT nanocomposites have been synthesized by a chemical reduction method and were investigated by X-ray diffraction, transmission electron microscopy, and electrochemical testing. The results demonstrated that the PtNi/MWCNT nanocomposites exhibited excellent electrocatalytic activity toward hydrogen peroxide and glucose. The electrocatalytic reduction of hydrogen peroxide showed a wide linear range from 0.2 μM to 24.6 mM, with a high sensitivity of 2123.1 μA mM−1 cm−2 and a detection limit of 60 nM (S/N = 3). At the same time, amperometric sensing of glucose was realized in a linear range from 0.1 μM to 9.0 mM, with an excellent sensitivity of 85 910.0 μA mM−1 cm−2. The present hybrid system also exhibited a good performance in terms of long-time stability, reproducibility and anti-interference ability.
Analytical Letters | 2017
Wenqin Wu; Hui Min; Huimin Wu; Yu Ding; Shuijin Yang
ABSTRACT Platinum–nickel nanoparticles were synthesized by a reduction procedure. The Pt–Ni/C composite was characterized by X-ray diffraction, infrared spectroscopy, transmission electron microscopy, and electrochemical analysis. The measurements show that the Pt–Ni/multiwalled carbon nanotubes provided higher electrocatalytic activity for the oxidation of uric acid than Pt–Ni/carbon black. The sensor prepared from the characterized material provided a long linear dynamic range from 0.1 to 240.4 µM with a detection limit of 0.03 µM and a sensitivity of 41.21 µA mM−1 cm−2. The reported modified electrode also provided excellent selectivity, good stability, and satisfactory reproducibility for the determination of uric acid.
Sensors and Actuators B-chemical | 2016
He Mei; Wenqin Wu; Beibei Yu; Huimin Wu; Shengfu Wang; Qinghua Xia
Sensors and Actuators B-chemical | 2016
Wenqin Wu; Yibin Li; Jiayi Jin; Huimin Wu; Shengfu Wang; Qinghua Xia
Mikrochimica Acta | 2015
He Mei; Wenqin Wu; Beibei Yu; Yibin Li; Huimin Wu; Shengfu Wang; Qinghua Xia
International Journal of Hydrogen Energy | 2016
Beibei Yu; Wenqin Wu; Jiayi Jin; Huimin Wu; Shengfu Wang; Qinghua Xia
Mikrochimica Acta | 2017
Jiayi Jin; Wenqin Wu; Hui Min; Huimin Wu; Shengfu Wang; Yu Ding; Shuijin Yang
Mikrochimica Acta | 2016
Wenqin Wu; Yibin Li; Jiayi Jin; Huimin Wu; Shengfu Wang; Yu Ding; Junfei Ou
Electroanalysis | 2016
He Mei; Wenqin Wu; Beibei Yu; Huimin Wu; Shengfu Wang; Xiuhua Zhang; Qinghua Xia