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朱小萤

性别:男
职称:讲师(高校)
单位:环境与资源学院
办公电话:0571-88982651 电子信箱:zhux@zju.edu.cn

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发表论文

主要论文:

1.    Guo S.=; Zhu X.=; Jańczewski, D.*; Lee, S.; He T.; Teo, S.; Vancso, G. J.* Protein isoelectric points at the molecular scale as determined by AFM force spectroscopy using trace amounts of sample. Nature Nanotechnology, 2016, 11, 817–823. (= these authors contributed equally to this work. if: 35.267)
2.    Guo, S., Zhu, X.*, Min, L., Shi, L., Ong, J. L. T., & Jańczewski, D.*, et al. Parallel control over surface charge and wettability using polyelectrolyte architecture: effect on protein adsorption and cell adhesion. ACS Applied Materials & Interfaces, 2016, 8 (44), 30552–30563 (if: 7.145)
3.    Zhu, X.; Janczewski, D.; Guo, S.; Lee, S.; Parra-Velandia, F. J.; Teo, S.; He T.; Puniredd, S. R.; Vancso, J., Polyion multilayers with precise surface charge control for antifouling. ACS Applied Materials & Interfaces, 2015, 7 (1), 852–861 (if: 7.145)
4.    Zhu, X.; Janczewski, D.; Lee, S.; Teo, S.; Vancso, J., Cross-linked polyelectrolyte multilayers for marine antifouling applications. ACS Applied Materials & Interfaces, 2013, 5 (13), 5961–5968. (if: 7.145)
5.    Zhu, X.; Tu, W.; Wee, K.; Bai, R., Effective and low fouling oil/water separation by a novel hollow fiber membrane with both hydrophilic and oleophobic surface properties. Journal of Membrane Science, 2014, 466, 36–44, (if: 5.557)
6.    Zhu, X.; Loo, H.; Bai, R., A novel membrane showing both hydrophilic and oleophobic surface properties and its non-fouling performances for potential water treatment applications. Journal of Membrane Science, 2013, 436, 47-56 (if: 5.557)
7.    Zhu, X.; Bai, R.; Wee, K.-H.; Liu, C.; Tang, S.-L., Membrane surfaces immobilized with ionic or reduced silver and their anti-biofouling performances. Journal of Membrane Science 2010, 363 (1-2), 278-286. (if: 5.557)
8.    Zhu, X.*; Guo, S.; He, T.; Jiang, S.; Jańczewski, D.*; Vancso, G. J.* Engineered, robust polyelectrolyte multilayers by precise control of surface potential for designer protein, cell and bacteria adsorption. Langmuir, 2016, 32, 1338-1346. (if: 3.993)
9.    Guo S.; Zhu X.*; Loh X.* Controlling cell adhesion using layer-by-layer approaches for biomedical applications. Materials Science and Engineering C. 2016, 20, 1163–1175 (if: 3.420)
10.    Zhu, X.*; Loh, X.* Layer-by-layer assemblies for antibacterial applications. Biomaterials Science, 2015, 3, 1505-1518. (if: 3.614)
11.    Guo, S.; Janczewski, D.; Zhu, X.*; Quintanab, R.; He, T., Neoh, K., Surface charge control for zwitterionic polymer brushes: Tailoring surface properties to antifouling applications. Journal of Colloid and Interface Science, 2015, 462, 43-53 (if: 3.782)
12.    Zhu, X.; Guo, S.; Janczewski, D.; Velandia, F.; Teo, S.; Vancso, J., Multilayers of fluorinated amphiphilic polyions for marine fouling prevention. Langmuir, 2014, 30 (1), 288–296 (if: 3.993)
13.    Zhu, X.; Tang, L.; Wee, K.-H.; Zhao, Y. H.; Bai, R., Immobilization of silver on polypropylene membrane for anti-biofouling performance. Biofouling, 2011, 27(7), 773-786. (if: 3.0)
 

其他论文:

1.    Liu, R.; Zhu, X.; Chen, B., A New Insight of Graphene oxide-Fe (III) Complex Photochemical Behaviors under Visible Light Irradiation, Scientific Reports, 2017, doi:  10.1038/srep40711 (if: 4.259)
2.    Abdul, G.; Zhu, X.; Chen, B., Structural characteristics of biochar-graphene nanosheet composites and their adsorption performance for phthalic acid esters, Chemical Engineering Journal, 2017, 319: 9-20 (if: 5.31)
3.    Shen, Y.: Zhu, X.; Zhu, L.; Chen, B., Synergistic effects of 2D graphene oxide nanosheets and 1D carbon nanotubes in the constructed 3D carbon aerogel for high performance pollutant removal, Chemical Engineering Journal, 2017, 314 :336-346 (if: 5.31)
4.    Yang, K.; Chen, B.; Zhu, X.; Xing, B., Aggregation, Adsorption and Morphological Transformation of Graphene Oxide in Aqueous Solutions Containing Different Metal Cations. Environmental Science & Technology, 2016, 50 (20), 11066–11075 (if: 5.393)
5.    Shen Y, Zhu X, Chen B. Size Effects of Graphene Oxide Nanosheets for Construction of Three-Dimensional Graphene-Based Macrostructures as Adsorbents. Journal of Materials Chemistry A, 2016,4, 12106-12118 (if: 8.262)
6.    Zhao, Y. H.; Zhu, X.; Wee, K. H.; Bai, R. B., Achieving Highly Effective Non-biofouling Performance for Polypropylene Membranes Modified by UV-Induced Surface Graft Polymerization of Two Oppositely Charged Monomers. Journal of Physical Chemistry B 2010, 114 (7), 2422-2429. (if: 3.187)
7.    Guo, S.; Puniredd, R.; Jańczewski, D.; Lee, S.; Teo, S.; He, T.; Zhu, X.; Vancso, J., Barnacle larvae exploring surfaces with variable hydrophilicity: Influence of morphology and adhesion of “footprint” proteins by AFM. ACS applied materials & interfaces 2014, 6 (16), 13667-13676 (if: 7.145)
8.    Brzozowska, A. M.; Parra-Velandia, F. J.; Quintana, R.; Zhu, X.; Lee, S. S. C.; Chin-Sing, L.; Janczewski, D.; Teo, S. L. M.; Vancso, J. G., Biomimicking Micropatterned Surfaces and Their Effect on Marine Biofouling. Langmuir 2014, 30 (30), 9165-9175 (if: 3.993)
9.    Puniredd, S. R.; Janczewski, D.; Go, D. P.; Zhu, X.; Guo, S.; Teo, S.; Lee, S.;  Vancso, J. G., Imprinting of Metal Receptors into Multilayer Polyelectrolyte Films: Fabrication and Applications in Marine Antifouling. Chemical Science 2015, 6 (1), 372-383 (if: 9.144)