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Dive into the research topics where Wang Zhouping is active.

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Featured researches published by Wang Zhouping.


New Journal of Chemistry | 2015

Fast synthesis of copper nanoclusters through the use of hydrogen peroxide additive and their application for the fluorescence detection of Hg2+ in water samples

Liao Xiaoqing; Li Ruiyi; Li Zaijun; Sun Xiulan; Wang Zhouping; Liu Junkang

Copper nanoclusters (CuNCs) have become promising nanomaterials due to their high electronic conductivity and low cost. This study reports the fast synthesis of CuNCs through the use of hydrogen peroxide (H2O2) additive and their application for the fluorescent detection of Hg2+ in water samples. Cu2+ was rapidly reduced into Cu0 in the presence of H2O2 and bovine serum albumin (BSA), further leading to the production of CuNCs. Under optimized conditions, the synthesis needs 1 h to achieve a high conversion rate of Cu2+ (more than 99%). In the resulting CuNCs, no Cu2+ can be found by the sodium sulfide test. Research on resonance light scattering, synchronous fluorescence and circular dichroism spectroscopy reveals that H2O2 may play two important roles in the synthesis of CuNCs. One role as a ligand is to combine with BSA–Cu complex to form BSA–Cu–H2O2 complex, which diminishes the reduction potential of Cu2+ and leads to the fast reduction of Cu2+ into Cu0. Another role as an oxidizing agent is to partly destroy disulfide bonds in BSA, which increases the degree of exposure of free amino groups. This results in an enhanced reduction ability of BSA towards Cu2+. Interestingly, the as-prepared CuNCs display better fluorescence intensity and optical stability when compared with the CuNCs prepared by the conventional method. The nanosensor based on the CuNCs was developed for the rapid, reliable, sensitive and selective sensing of Hg2+ with a detection limit of 4.7 × 10−12 M (S/N = 3) and a dynamic range of 1 × 10−5−1 × 10−11 M. It has been successfully used for the detection of Hg2+ in water samples.


Sensors and Actuators B-chemical | 2015

Novel graphene-gold nanohybrid with excellent electrocatalytic performance for the electrochemical detection of glucose

Li Ruiyi; Zhang Juanjuan; Wang Zhouping; Li Zaijun; Liu Junkang; Gu Zhiguo; Wang Guangli


Archive | 2013

Staphylococcus aureus unmarked electrochemical aptamer sensor based on reduced graphene oxide-nanogold composite material

Wang Zhouping; Jia Fei; Duan Nuo; Xia Yu; Ma Xiaoyuan


Archive | 2013

Visual detection method for mouse typhus salmonella based on aptamer recognition

Wang Zhouping; Yuan Jinglei; Yu Ye; Duan Nuo; Wu Shijia; Xia Yu; Ma Xiaoyuan


Archive | 2013

Group of oligonucleotides aptamers capable of specifically recognizing aflatoxin B1

Wang Zhouping; Wang Wenfeng; Duan Nuo; Wu Shijia; Xia Yu; Ma Xiaoyuan


Archive | 2013

Oligonucleotides aptamer special for distinguishing fumonisin B1

Wang Zhouping; Chen Xiujuan; Duan Nuo; Wu Shijia


Archive | 2013

Method for simultaneously detecting two pathogenic bacteria by employing quantum dot marked aptamer recognition and flow cytometry

Wang Zhouping; Duan Nuo; Wu Shijia; Ma Xiaoyuan; Xia Yu


Archive | 2016

Method for detecting ochratoxin A (OTA) based on luminescence resonance energy transfer between up-conversion luminescence nano-material and gold nano-rods

Wu Shijia; Dai Shaoliang; Wang Zhouping; Duan Nuo


Archive | 2014

Detection method for food-borne pathogenic bacteria by using sensor based on dye AccuBlue label-free aptamer

Wang Zhouping; Duan Nuo; Wu Shijia


Archive | 2013

One group of aptamers for specifically recognizing staphylococcus aureus enterotoxin C1

Wang Zhouping; Huang Yukun; Xia Yu; Chen Xiujuan

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Xia Yu

Jiangnan University

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