[1] |
CHEN Peiwen, ZHU Lianjie, CHANG Zhuangzhuang, GAO Hongjia, CHEN Deyou, QIU Mo.
Spherical Cu2O Assembled by Small Nanoparticles and Its High Efficiency in Photodegradations of Methylene Blue Under Different Light Sources
[J]. Chemical Research in Chinese Universities, 2020, 36(6): 1108-1115.
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[2] |
ZHENG Jingyi, FENG Rongrong, HE Caimei and LI Xiaoxia.
Graphene-Gold Nanoparticle-modified Electrochemical Sensor for Detection of Kanamycin Based on Target-induced Aptamer Displacement
[J]. Chemical Research in Chinese Universities, 2018, 34(6): 952-958.
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[3] |
ZHAO Rui, LI Xiang, SUN Bolun, LI Yumei, LI Yanzi, WANG Ce.
Preparation of Molecularly Imprinted Sericin/Poly(vinyl alcohol) Electrospun Fibers for Selective Removal of Methylene Blue
[J]. Chemical Research in Chinese Universities, 2017, 33(6): 986-994.
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[4] |
LIU Yani, LUO Xinsheng, ZHANG Zhe, ZHOU Pengxin, YANG Zhiwang.
Modeling and Thermodynamics of Methylene Blue and Acid Blue 80 Adsorption onto Potato Residue Based Activated Carbon
[J]. Chemical Research in Chinese Universities, 2015, 31(4): 627-632.
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[5] |
WIDCHAYA Radchatawedchakoon, ARAYA Thapol, RATCHANEEKORN Wanchanthuek.
Effects of Experimental Conditions and Kinetics of Photodegradation of Methylene Blue over TiO2
[J]. Chemical Research in Chinese Universities, 2014, 30(1): 149-156.
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[6] |
WANG Yuan-you, LIU Tian-qing, XU Wei-wei.
Preparation of Hollow Polypyrrole Nanospheres in Niosome System
[J]. Chemical Research in Chinese Universities, 2013, 29(3): 607-610.
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[7] |
LI Zhi, SHI Xiao-jun, GE Xue-ping, WEI Jian-jun, YANG Cun-zhong, FANG Bin, XIE Hai-fen, AN Xing-cai.
Electron Interaction Among the Noncovalently Engineered Graphene-methylene Blue Nanocomposites
[J]. Chemical Research in Chinese Universities, 2012, 28(3): 520-523.
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[8] |
HU Xiao-li*, LIU Sa, LIU Shao-pu, LIU Zhong-fang and SONG Yan-qi .
Resonance Rayleigh Scattering and Resonance Nonlinear Scattering Methods for Determination of Methylene Blue with 12-Tungstophosphoric Acid
[J]. Chemical Research in Chinese Universities, 2011, 27(2): 208-211.
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[9] |
Lü Qing-luan, YUE Ning-ning, ZHANG Miao, GONG Bin and WANG Huai-you*.
Capacity of Tea Scavenging Singlet Oxygen Studied by Means of 1,3-Diphenylisobenzofuran as Fluorescence Probe
[J]. Chemical Research in Chinese Universities, 2009, 25(6): 966-970.
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[10] |
WANG Xiu-li, ZHAO Hai-yan , WANG Yi-fei.
Preparation, Electrochemical Property and Application in Bulk-modified Electrode of Dawson-type Phosphomolybdate-doped Polypyrrole Composite Nanoparticles
[J]. Chemical Research in Chinese Universities, 2006, 22(5): 556-559.
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[11] |
WANG Xiu-li, ZHAO Hai-yan, WANG Yi-fei.
Preparation, Electrochemical Property and Application in Bulk-modified Electrode of Dawson-type Phosphomolybdate-doped Polypyrrole Composite Nanoparticles
[J]. Chemical Research in Chinese Universities, 2006, 22(5): 556-559.
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[12] |
KANG Tian-fang, SHEN Guo-li, YU Ru-qin .
Voltammmetric Determination of Uric Acid in the Presence of Ascorbates Using OveroxidizedPolypyrrole Film Coated Glassy Carbon Electrodes
[J]. Chemical Research in Chinese Universities, 1997, 13(3): 207-214.
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[13] |
CHI Qi-jin, DONG Shao-jun.
Direct Electron Communication Between Glucose Oxidase and Carbon Electrode Covered with Polypyrrole
[J]. Chemical Research in Chinese Universities, 1996, 12(1): 37-43.
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[14] |
CAI Chen-xin, JU Huang-xian, CHEN Hong-yuan .
Electrochemical Properties of Polypyrrole-Coated Microelectrode Array and the Fabrication of Polypyrrole-Based Microelectronic Devices
[J]. Chemical Research in Chinese Universities, 1995, 11(2): 163-169.
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[15] |
LI Jing, WANG Er-kang .
Electrochemical Scanning Tunneling Microscopy──An Ex-situ Study of the Growth of Polypyrrole Films on Electrodes
[J]. Chemical Research in Chinese Universities, 1994, 10(2): 72-78.
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