2021年09月28日   欢迎光临聚合物分离膜及其表界面工程课题组!

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    [364] Zhong, Q.-Z.; Richardson, J.- J.; He, A.; Zheng T.; Lafleur, R.; Li, J.-H.; Qiu W.-Z.; Furtado D.; Pan, S.-J.; Xu, Z.-K.; Wan L.-S.*; Caruso, F.*, Engineered Coatings via the Assembly of Amino-Quinone Networks, Angew. Chem. Int. Ed. 2021, 60, 2346-2354. 

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    [363] Xu,  L.-J.; Shi, X.-Y.; Chai, M.-Y.; Ji, J.; Xu, Z.-K.; Wan, L.-S.*, Surface Metallization of Porous Polymer Materials for Multifunctional Applications, Langmuir 2020, 36, 1454-1461.

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    [362] Wei, C.-J.; Qiang, R.-R.; Lin, L.-G.*; Gao, Y.-X.; Ma, S.-Y.; Zhang, X.-H.; Huang, X.-J.*, Combing three-dimensional water channels and ultra-thin skin layer enable high flux and stability of loose polyimide/SiO2 nanofiltration membranes at low operating pressure via one step in-situ modification, J. Membr. Sci. 2021, 623, 118944.


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    [361] Wu, H.-M.; Ma, Z.; Wei, C.-J.; Jiang, M.; Hong, X.; Li, Y.; Chen, D.-J.*; Huang X.-J.*, Three-dimensional microporous hollow fiber membrane microfluidic device integrated with selective separation and capillary self-driven for point-of-care testing, Anal. Chem. 2020, 92, 6358-6365.


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    [360] Wei, C.-J.; Lin, L.-G.; Zhao, Y.-P.; Zhang, X.-H.; Yang, N.; Chen, L.*; Huang X.-J.*, Fabrication of pH-sensitive superhydrophilic/underwater superoleophobic poly(vinylidene fluoride)-graft-(SiO2 nanoparticles and PAMAM dendrimers) membranes for oil-water separation, ACS Appl. Mater. Interfaces 2020, 12, 19130-19139.


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    [359] Huang, H.-T.; Li, T.; Jiang, M.; W, C.-J.; Ma, S.-Y.; Chen, D.-J.*; Tong, W.-J.*; Huang, X.-J.*, Construction of flexible enzymatic electrode based on gradient hollow fiber membrane and multi-wall carbon tubes meshes, Biosens. Bioelectron. 2020, 152, 112001.


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    [358] Wu, H.-M.; Shi, C.-F.; Zhu, Q.; Li, Y.; Xu, Z.-K.; Wei, C.-J.*; Chen, D.-J.*; Huang, X.-J.*, Capillary-driven blood separation and in-situ electrochemical detection based on 3D conductive gradient hollow fiber membrane, Biosens. Bioelectron. 2021, 171, 112722


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    [357] Zhu, C.-Y.; Li, H.-N.; Yang, J.; Li, J.-J.; Ye, J.-R.; Xu, Z.-K.*, Vacuum-assisted diamine monomer distribution for synthesizing polyamide composite membranes by interfacial polymerization, J. Membr. Sci., 2020, 616, 118557


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    [356] Yang, S.-J.; Zou, L.-Y.; Liu, C.; Zhong, Q.; Ma, Z.-Y.; Yang, J.; Ji, J.*; Müller-Buschbaum, P.*; Xu, Z.-K.*, Codeposition of Levodopa and Polyethyleneimine: Reaction Mechanism and Coating Construction, ACS Appl. Mater. Interfaces 2020, 12, 48, 54094–54103


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    [355] Wu, M.-B.; Yang, F.; Yang, J.; Zhong, Q.; Körstgen, V.; Yang, P.*; Müller-Buschbaum, P.*; Xu, Z.-K.*,Lysozyme Membranes Promoted by Hydrophobic Substrates for Ultrafast and Precise Organic Solvent Nanofiltration, Nano Letters 2020,20 (12), 8760-8767


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    [354] Wu, M.-B.; Huang, S.; Liu, T.-Y.; Wu, J.*; Agarwal, S.*; Greiner, A.*; Xu, Z.-K.*,Compressible Carbon Sponges from Delignified Wood for Fast Cleanup and Enhanced Recovery of Crude Oil Spills by Joule Heat and Photothermal Effect. Adv. Funct. Mater. 2020, 2006806


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    [353] Ma, Z.-Y.; Zhang, X.; Liu, C.; Dong, S.-N.; Yang, J.*; Wu, G.-P.; Xu, Z.-K.,Polyamide nanofilms synthesized via controlled interfacial polymerization on a “jelly” surface, Chem. Commun., 2020,56, 7249-7252


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    [352] Wu, M.-B.; Huang, S.; Liu, C.; Wu, J.*; Agarwal, S.; Greiner, A.*; Xu, Z.-K.*, Carboxylated wood-based sponges with underoil superhydrophilicity for deep dehydration of crude oil, J. Mater. Chem. A, 2020, 8, 11354-11361


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    [351] An, Y.-P.; Liu, C.; Yang, J.*; Guo, B.-B.; Xu, Z.-K.*, Concentrating water-soluble ionic liquids from aqueous solutions: Osmotic distillation with hydrophobic membranes, J. Membr. Sci., 2020, 118222


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    [350] Li, H.-N.; Yang, J.*; Xu, Z.-K.*, Asymmetric Surface Engineering for Janus Membranes, Adv. Mater. Interfaces, 2020, 7, 1902064


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    [349] Li, H.-N.; Yang, J*; Xu, Z.-K.*, Hollow fiber membranes with Janus surfaces for continuous deemulsification and separation of oil-in-water emulsions, J. Membr. Sci., 2020, 117964


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    [348] Yu, H.-H.; Yan, L.-J.; Shen, Y.-C.; Chen, S.-Y.; Li, H.-N.; Yang, J.*; Xu, Z.-K.*, Janus Poly(Vinylidene Fluoride) Membranes with Penetrative Pores for Photothermal Desalination, Research, 2020, 3241758


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    [347] Pi, J.-K.; Yang, J.; Xu, Z.-K.*, One-pot mussel-inspiration and silication: A platform for constructing oil-repellent surfaces toward crude oil/water separation, J. Membr. Sci., 2020, 117915


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    [346] Liu, C.; An, Y.-P.; Yang, J.; Guo, B.-B.; Yu, H.-H.; Xu, Z.-K.*, Osmotic pressure as driving force for recovering ionic liquids from aqueous solutions, J. Membr. Sci., 2020, 117835


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    [345] Gao, N.; Fan, W.; Xu, Z.-K.*, Ceramic membrane with protein-resistant surface via dopamine/diglycolamine co-deposition, Sep. Purif. Technol., 2020, 234, 116135


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    [344] Du, Y.; Zhang, X.; Yang, J.; Lv, Y.; Zhang, C.; Xu, Z.-K.*, Ultra-thin graphene oxide films via contra-diffusion method: Fast fabrication for ion rejection, J. Membr. Sci., 2020, 595, 117586


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    [343] Zhang, X.; Liu, C.; Yang, J.*; Zhu, C.-Y.; Zhang, L.; Xu, Z.-K.*, Nanofiltration membranes with hydrophobic microfiltration substrates for robust structure stability and high water permeation flux, J. Membr. Sci.2019, 593, 117444


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    [342] Zhang, C.; Liang, H.-Q.; Pi, J.-K.; Wu, G.-P.*; Xu, Z.-K.*, Polypropylene Separators with Robust Mussel-inspired Coatings for High Lithium-ion Battery Performances, Chinese J. Polym. Sci., 2019, 37, 1015–1022.


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    [340] Wang, G.-J.; Wu, B.-H.; Xu, Z.-K.*; Wan, L.-S.*, Janus polymer membranes prepared by single-side polydopamine deposition for dye adsorption and fine bubble aeration, Mater. Chem. Front.2019, 3, 2102-2109


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    [339] Ma, M.-Q.; Zhang, C.; Zhu, C.-Y.; Huang, S.; Yang, J.*; Xu Z.-K.*, Nanocomposite Membranes Embedded with Functionalized MoS2 Nanosheets for Enhanced Interfacial Compatibility and Nanofiltration Performance, J. Membr. Sci., 2019, 584, 282-289.


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    [338]  Pi, J.-K.; Yang, J.; Zhong, Q.; Wu, M.-B.; Yang, H.-C.; Schwartzkopf, M.; V. Roth, S.; Müller-Buschbaum, P.*;  Xu, Z.-K.*, Dual-Layer Nanofilms via Mussel-Inspiration and Silication for Non-Iridescent Structural Color Spectrum in Flexible Displays, ACS Appl. Nano Mater., 2019, 2, 4556-4566.


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    [337] Zhang, C.; Liang, H.-Q.; Xu, Z.-K.*; Wang, Z.-K.*, Harnessing Solar‐Driven Photothermal Effect toward the Water–Energy NexusAdvanced Science, 2019, 1900883.


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    [336] Wu, M.-B.; Hong, Y.-M.; Liu, C.; Yang, J.*; Wang, X.-P.; Agarwal, S.; Greiner, A.; Xu, Z.-K.*, Delignified Wood with Unprecedented Anti-Oil Properties for the Highly Efficient Separation of Crude Oil/Water MixturesJournal of Materials Chemistry A, 2019, 7, 16735-16741.


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    [335] Zhang, C.; Wu, B.-H.; Ma, M.-Q.; Wang, Z.-K.; Xu, Z.-K.*, Ultrathin Metal/Covalent–Organic Framework Membranes towards Ultimate SeparationChemical Society Reviews, 2019, 48, 3811-3841.


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    [334] Huang, S.; Wu, M.-B.; Zhu, C.-Y.; Ma, M.-Q.; Yang, J.; Wu, J.*; Xu, Z.-K.*, Polyamide Nanofiltration Membranes Incorporated with Cellulose Nanocrystals for Enhanced Water Flux and Chlorine ResistanceACS Sustainable Chemistry & Engineering, 2019, 7, 12315-12322.


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    [333] Zhang, C.; Xiang, L.; Zhang, J.-W.; Gong, L.; Han, L.-B.; Xu, Z.-K.*; Zeng, H.-B.*, Tough and Alkaline-Resistant Mussel-Inspired Wet Adhesion with Surface Salt Displacement via Polydopamine/Amine SynergyLangmuir, 2019, 35, 5257-5232.


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    [332] Ou, Y.; Zhou, D.; Xu, Z.-K.; Wan, L.-S.*, Surface Modification of Self-Assembled Isoporous Polymer Membranes for Pressure-Dependent High-Resolution SeparationPolymer Chemistry, 2019, 10, 3201-3209.


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    [331] Yu, H.; Zhong, Q.-Z.; Liu, T.-G.; Qiu, W.-Z.; Wu, B.-H.; Xu, Z.-K.; Wan, L.-S.*, Surface Deposition of Juglone/FeIII on Microporous Membranes for Oil/Water Separation and Dye Adsorption, Langmuir, 2019, 35, 3643-3650.




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    [330] Yang, J.; Li, H.-N.; Chen, Z.-X.; He, A.; Zhong, Q.-Z.; Xu, Z.-K.*, Janus Membranes with Controllable Asymmetric Configurations for Highly Efficient Separation of Oil-in-Water Emulsions, Journal of Materials Chemistry A, 2019, 7, 7907-7917.

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    [329] Wu, M.-B.; Zhang, C.; Pi, J.-K; Liu, C.; Yang, J.*; Xu, Z.-K.*, Cellulose Nanocrystals as Anti-Oil Nanomaterials for Separating Crude Oil from Aqueous Emulsions and Mixtures. Journal of Materials Chemistry A, 2019, 7, 7033-7041.


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    [328] Ma, M.-Q.; Zhang, C.; Chen, T.-T; Yang, J.*; Wang, J.-J.; Ji, J.; Xu, Z.-K.*, Bioinspired Polydopamine/Polyzwitterion Coatings for Underwater Anti-Oil and -Freezing Surfaces. Langmuir 2019, 35, 1895-1901.


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    [327] Wu, B.-H.; Zhang, C.; Zheng. N.; Wu, L.-W.; Xu, Z.-K.; Wang, L.-S.*, Grain Boundaries of Self-Assembled Porous Polymer Films for Unclonable Anti-Counterfeiting. ACS Appl. Polym. Mater. 2019, 1, 47-53.


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    [326] Zhang, C.; Hu, D.-F.; Xu, J.-W.; Ma, M.-Q.; Xing, H.-B.; Yao, K.*; Ji, J.*;Xu, Z.-K.*, Polyphenol-Assisted Exfoliation of Transition Metal Dichalcogenides into Nanosheets as Photothermal Nanocarriers for Enhanced Antibiofilm Activity. ACS Nano2018, 12, 12347-12356.


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    [323] Lv, Y.; Yang, S.-J.; Du, Y.; Yang, H.-C.; Xu, Z.-K.*, Co-deposition Kinetics of Poludopamine/Polyethyleneimine Coatings: Effects of Solution Compositione and Substrate Surface, Langmuir, 2018, 34, 13123-13131.


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    [321] Qiu, W.-Z.; Wu, G.-P.*; Xu, Z.-K.*, Robust Coatings via Catechol-Amine Codeposition: Mechanism, Kinetics, and Application, Acs Applied Materials & Interfaces, 2018, 10, 5902-5908.


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    [320Qiu, W.-Z.; Yang, H.-C.; Xu, Z.-K.*, Dopamine-Assisted Co-Deposition: An Emerging and Promising Strategy for Surface Modification, Advances in Colloid and Interface Science2018, 256, 111-125.


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    [319] Zhang, C.; Wu, M.-B.; Wu, B.-H.; Yang, J.*; Xu, Z.-K.*, Solar-Driven Self-Heating Sponges for Highly Efficient Crude Oil Spill Remediation, Journal of Materials Chemistry A2018, 6, 8880-8885.


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    [317] An, Y.-P.; Yang, J.*; Yang, H.-C.; Wu, M.-B.; Xu, Z.-K.*, Janus Membranes with Charged Carbon Nanotube Coatings for Deemulsification and Separation of Oil-in-Water Emulsions, Acs Applied Materials & Interfaces, 2018, 10, 9832-9840.


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    [316] Zhou, Y.-T.; Yang, J.*; Liang, H.-Q.; Pi, J.-K.; Zhang, C.; Xu, Z.-K.*, Sandwich-Structured Composite Separators with an Anisotropic Pore Architecture for Highly Safe Li-Ion Batteries, Composites Communications2018, 8, 46-51.

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