| 姓 名 | 王金杰(Wang Jinjie) | |
办公地点 | 实训楼4号楼4401室 | ||
办公电话 | 021-67791221 | ||
电子邮箱 | jinjiewang@sues.edu.cn | ||
毕业学校 | 上海交通大学 | ||
研究方向 1.纳米材料的合成及其在生物分析和环境分析中的应用(荧光分析/比色分析) 2.无机陶瓷过滤膜的表征与功能化研究 | |||
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代表性论著 [1] Jinjie Wang; Yiwen Hong; Yongqi Pan; Jiaying Zhu; Xiaoqing Xu; Won Mook Choi; Jingxia Yang*; Ni-foam supported Ni(OH)2 sheets decorated by MXene quantum dots for high performance supercapacitors, Materials Chemistry and Physics , 2024, 312: 128634 [2] Jiaying Zhu; Jinjie Wang*; Hui Zhong; Yue Hu; Liqun Hu; Pinhua Rao; Rui Liu; Jun Zhu; Guanghui Li*; New method for measuring the pore sizes and pore size distributions of filter membranes—the fluorescence probe method, Microchimica Acta , 2023, 190(12): 469 [3] Liqun Hu; Yue Hu; Jiaying Zhu; Jin Li; Pinhua Rao; Jian Guo; Guanghui Li; Jinjie Wang*; Effect of Post−Oxidation Treatment on the Performance and Microstructure of Silicon Carbide Ceramic Membrane, Coatings, 2023, 13(5): 957 [4] Suqin Liu, Jinjie Wang*, Yue Hu, Yunjing Shi, Jingxia Yang, Min Zhang*, Differential Sensing of Antibiotics Using Metal Ions and Gold Nanoclusters Based on TMB&H2O2 System, Chemosensors, 10 (2022) 222. [5] Guo, Lei; Yang, Jingxia; Zhang, Huiqing; Wang, Runkai; Xu, Jingli; Wang, Jinjie*; Highly Enhanced Visible-light Photocatalytic Activity via a Novel Surface Structure of CeO2/g-C3N4 toward Removal of 2,4-dichlorophenol and Cr(VI), ChemCatChem , 2021, 13(8): 2034-2044 [6] Yunjing, Shi, Jinjie Wang*, Kun Mu, Suqin Liu, Guang Yang, Min Zhang, Jingxia Yang, Copper (II) Ion-Modified Gold Nanoclusters as Peroxidase Mimetics for the Colorimetric Detection of Pyrophosphate, Sensors, 21 (2021) 5538 [7] Yang, Jingxia; Peng, Shuaishuai; Shi Yunjing; Ma, Shuyi; Wang, Jinjie*, Fast Visual Evaluation of the Catalytic Activity of CeO2: Simple Colorimetric Assay Using 3,3',5,5'-tetramethylbenzidine as Indicator. Journal of Catalysis, 2020,389,71-77 [8] Ma, Shuyi; Wang, Jinjie*; Yang, Guang; Yang, Jingxia; Ding, Derun; Zhang, Min*, Copper(II) ions enhance the peroxidase-like activity and stability of keratin-capped gold nanoclusters for the colorimetric detection of glucose. Microchimica Acta, 2019, 186, 271 [9] Zhou, Yongquan; Wang, Jinjie*; Yang, Guang; Ma, Shuyi; Zhang, Min and Yang, Jingxia*, Cysteine-rich protein-templated silver nanoclusters as a fluorometric probe for mercury (II) detection. Analytical Methods,2019,11,733-738 [10] Wang, Jinjie; Ma, Shuyi; Ren, Jicun; Yang, Jingxia; Qu, Yi; Ding, Derun; Zhang, Min*; Yang, Guang*, Fluorescence enhancement of cysteine-rich protein-templated gold nanoclusters using silver(I) ions and its sensing application for mercury(II). Sensors and actuators B-Chemical,2018,267,733-738 [11] Ding, Huihui; Yang, Jingxia*; Ma, Shuyi; Yigit, Nevzat; Xu, Jingli; Rupprechter, Guenther; Wang, Jinjie*, Large Dimensional CeO2 Nanoflakes by Microwave-Assisted Synthesis: Lamellar Nano-Channels and Surface Oxygen Vacancies Promote Catalytic Activity. Chemcatchem, 2018,10,4100-4108 [12] Wang, Jinjie; Huang, Xiangyi; Liu, Heng; Dong, Chaoqing*; Ren, Jicun*, Fluorescence and Scattering Light Cross Correlation Spectroscopy and Its Applications in Homogeneous Immunoassay. Analytical chemistry, 2017,89,5230-5237 [13] Wang, Jinjie; Liu, Heng; Huang, Xiangyi*; Ren, Jicun*, Homogeneous immunoassay for the cancer marker alpha-fetoprotein using single wavelength excitation fluorescence cross-correlation spectroscopy and CdSe/ZnS quantum dots and fluorescent dyes as labels. Microchimica acta, 2016,183,749-755 | |||

