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个人简介

赵燕,特聘教授、博士生导师2001年和2004年在青岛大学分别获应用化学专业学士和硕士学位2008年获上海交通大学材料学博士学位。20087月至20174月,在澳大利亚迪肯(Deakin)大学工作,先后为Alfred Deakin Postdoctoral FellowARC APD FellowResearch Fellow20174加入网赌十大正规网。至今已主持各类科研项目10余项;发表论文130余篇,其中80余篇以第一作者或通讯作者发表于Adv. Mater., Adv. Funct. Mater., Angew. Chem. Int. Ed., npj Flex. Electron., Energy Storage Mater., J. Energy Chem., Small, Small Methods, Chem. Eng. J., J. Mater. Sci. Technol., Compos. B: Eng., Appl. Mater. Today, Electrochim. Acta等期刊,研究成果相关引用5000余次,h指数38;出版专著章节4篇;已获授权发明专利28件。

研究方向

长期从事纤维材料表界面设计与功能化,及其热湿物理特性与界面传热传质研究,应用于液体定向输运、汗液单向传导与电化学传感等方面的微液流控制,以及隔热耐热阻燃、高相变焓储热蓄冷调温、高热安全性锂电池隔膜等热管理领域。

讲授课程

  • 本科生:纳米材料导论;新生研讨课;智能响应纤维材料专题

  • 硕士生:热湿管理纤维材料、智能响应纤维材料等专题

  • 博士生:纤维材料前沿进展讲座;博士生应用英语

近五年的主要论文

  1. J Li, L Lu, H Liang, Y Sun, X Guo, Z Wei*, Y Zhao*, “Silkworm cocoon-inspired and robust nanofibrous composite separator with gradient structure for lithium ion batteries”, Composite Structures 2024, 339, 118161.

  2. Z Huang, T Zhang*, A Ju, Z Xu, Y Zhao*, “Macroporous, highly hygroscopic, and leakage-free composites for efficient atmospheric water harvesting”, ACS Applied Materials & Interfaces 2024, 16, 16893-16902.

  3. X Yin, Y Wang, Z Xu, T Zhang*, Y Zhao*, “Flame-retardant, cellulose-based, thermal insulating polyHIPEs and their application for early fire warning”, Cellulose2024, 31, 3783-3796.

  4. Y Jiang, B Li, Z Xu, T Zhang*, Y Zhao*, “Emulsion-based monoliths with a solid-gel phase-transition and a solid–solid phase-transition for latent heat storage”, Journal of Polymer Science2024, 62, 2027-2035.

  5. F Xu, T Zhang*, Z Xu, Y Zhao*, “Solid-solid phase change fibers with enhanced energy storage density for temperature management”, Journal of Energy Storage2024, 79, 110190.

  6. H Cao, Z Xu, T Zhang*, Y Zhao*, “Highly stretchable phase change fibers from coaxial wet spinning of nonaqueous emulsions for temperature regulation”, Chemical Engineering Journal2023, 478, 147389.

  7. T Guo, H Chi, Z Wei*, Y Zhao*, “Under-Oil Superhydrophilic/Superhydrophobic Janus Nanofibrous Membrane for Highly Efficient Separation of Surfactant-Stabilized Water-in-Oil Emulsions”, Langmuir2023, 39, 16668-16675.

  8. J Gu, Y Feng, X Wei, C Zhang, T Peng, L Lu, Z Wei*, Y Zhao*, “Flexible fibrous separator asymmetrically coated by silica and MXene for high performance lithium batteries with enhanced safety”, Journal of Power Sources2023, 581, 233515.

  9. Z Wei*, L Yu, S Lu,Y Zhao*, “Reversibly Thermo-Responsive Materials Applied in Lithium Batteries”, Energy Storage Materials2023, 61, 102901.

  10. H Chen, Z Wang, Y Feng, S Cai, H Gao, Z Wei*, Y Zhao*, “Cellulose-based Separators for Lithium Batteries: Source, Preparation and Performance”, Chemical Engineering Journal2023, 471, 144593.

  11. C Pan, X Wei, Y Feng, Z Wei*, Y Zhao*, “WO3 composited polyimide nanofibrous separator with superior thermo-mechanical properties and high capacity for lithium-ion batteries”, Journal of Materials Science2023, 58, 10686-10698.

  12. S Fu, H Li, Y Jiang, Z Xu*, Y Zhao*, “Under-oil Superhydrophilic and Flame Retardant Fabrics for Water Removal from Oil”, Fibers and Polymers2023, 24, 2743-2750.

  13. Y Cheng, S Wang, Z Xu*, L Jiang, Y Zhao*, “Non-fluorine oil repellency: To what extent can it substitute perfluoroalkyl substances?”, Progress in Organic Coatings2023, 183, 107726.

  14. H Chen, Y Ding, G Zhu*, Y Liu, Q Fang, X Bai*, Y Zhao*, X Li, X Huang, T-Y Zhang, B Li, B Sun*, “A new route to fabricate flexible, breathable composites with advanced thermal management capability for wearable electronics”, npj Flexible Electronics2023, 7, 24.

  15. H Zhang, Z Xu*, T Zhang, Y Zhao*, “Nanoscale chemical heterogeneity enables the co-existence of opposing superhydrophobic and hygroscopic properties”, Progress in Organic Coatings2023, 182, 107627.

  16. K Zhang, H Chen, H Huang, Z Wei*, Y Zhao*, “Water-soluble ammonium polyphosphate synchronously enables mechanically robust and flame-retardant cellulose composite separator for high safety lithium batteries”, Journal of Power Sources2023, 558, 232627.

  17. J Xing, W Fan, J Li, Z Wang, Z Wei*, Y Zhao*, “Orientation gradient architecture of nanofibrous separator towards mechanical enhancement and ion transport acceleration for lithium-ion batteries”, Electrochimica Acta2023, 441, 141794.

  18. H Sun, W Mu, X Cui*, Z Xu, T Zhang, Y Zhao*, “Polymer-encapsulated aerogel fibers prepared via coaxial wet-spinning with stepwise coagulation for thermal insulation”, ACS Applied Polymer Materials2023, 5, 552-559.

  19. H Li, S Li, Q Li, G Chen*, Y Zhao*, Y Cai*, “Universal, mechanically robust and self-healing superhydrophobic coatings enabled by covalent adaptable networks of disulfide bonds”,Progress in Organic Coatings2023, 175, 107362.

  20. X Yin, T Zhang*, T Zhao, K Wang, Z Xu, Y Zhao*, “Cellulose-based, flexible polyurethane polyHIPEs with quasi-closed-cell structures and high stability for thermal insulation”, Carbohydrate Polymers2023, 302, 120385.

  21. H Chi, H Cao, Z Xu*, T Zhang, J Yu, Y Zhao*, “Unexpected excellent under-oil superhydrophilicity of poly(2-(dimethylamino)ethyl methacrylate) for water capture from oil and water-induced oil self-dewetting”, Colloids and Surfaces A2023, 657, 130588.

  22. Y Zhou, L Fan, H Li, Y Cui, S Yu, Z Wei*, Y Zhao*, “Fibrous separator with surface modification and micro-nano fibers lamination enabling fast ion transport for lithium-ion batteries”, Chinese Journal of Polymer Science2023, 41, 222-232.

  23. J Lu, T Zhang*, Z Xu, X Yin, Y Zhao*, “PolyHIPE composites for latent heat storage: Flexibility and enhanced light to heat conversion”, ACS Applied Polymer Materials2022, 4, 8083-8091.

  24. S Yang, Z Xu, T Zhao, T Zhang*, Y Zhao*, “Emulsion-templated, hydrophilic and underwater oleophobic PVA aerogels with enhanced mechanical property”, Colloids and Surfaces A2022, 653, 129979.

  25. Z Peng, R Liu, Z Xu*, H Chi, Z Wang*, Y Zhao*, “Directional sweat transport window based on hydrophobic/hydrophilic Janus fabric enables continuous transfer and monitoring of sweat”, Applied Materials Today2022, 29, 101623.

  26. L Yu, J Gu, C Pan, J Zhang, Z Wei*, Y Zhao*, “Recent developments of composite separators based on high-performance fibers for lithium batteries”,Composites Part A2022,162, 107132.

  27. T Zhao, T Zhang*, Z Xu, Y Zhao*, “Emulsion-based, flexible and recyclable aerogel composites for latent heat storage”, Journal of Colloid and Interface Science2022, 627, 72-80.

  28. J Xing, J Li, W Fan, T Zhao, X Chen, H Li, Y Cui, Z Wei*, Y Zhao*, “A review on nanofibrous separators towards enhanced mechanical properties for lithium-ion batteries”,Composites Part B2022,243, 110105.

  29. H Li, S Tang, W Chen, X Yang, S Dong, T Xing, Y Zhao*, G Chen*, “A fully waterborne coating system based on thiol-ene click reaction for robust and self-healing superhydrophobic surfaces”, Chemical Engineering Journal2022, 447, 137499.

  30. S Yang, Z Xu, T Zhang*, Y Zhao*, “Emulsion-templated, hydrophilic-oleophobic aerogels with flexibility, stretchability and recyclability”, Polymer2022, 250, 124886.

  31. L Jiang, Y Cheng, S Wang, Z Xu*, Y Zhao*, “Non-fluorine oil repellency: How low the intrinsic wetting threshold can be for roughness-induced contact angle amplification?”, Langmuir2022, 18, 5857-5864.

  32. X Guo, J Li, J Xing, K Zhang, Y Zhou, C Pan, Z Wei*, Y Zhao*, “Silkworm cocoon layer with gradient structure as separator for lithium-ion battery”, Energy Technology2022, 2100996.

  33. H Li, S Tang, W Chen, X Yang, S Dong, T Xing, Y Zhao*, G Chen*, “Robust multifunctional superhydrophobic, photocatalytic and conductive fabrics with electro-/photo-thermal self-healing ability”, Journal of Colloid and Interface Science2022, 614, 1-11.

  34. T Zhang*, H Cao, H Gui, Z Xu, Y Zhao*, “Microphase-separated, magnetic macroporous polymers with amphiphilic swelling from emulsion templating”,Polymer Chemistry2022, 13, 1090-1097.

  35. X Li, T Zhang*, J Lu, Z Xu, Y Zhao*, “Emulsion-templated, magnetic, hydrophilic-oleophobic composites for controlled water removal”,Langmuir2022, 38, 1422-1431.

  36. X Yu, Y Yang, W Yang, X Wang, X Liu*, F Zhou, Y Zhao*, “One-step zwitterionization and quaternization of thick PDMAEMA layer grafted through subsurface-initiated ATRP for robust antibiofouling and antibacterial coating on PDMS”, Journal of Colloid and Interface Science2022, 610, 234-245.

  37. T Tang, S Wang, Y Jiang*, Z Xu, Y Chen, T Peng, F Khan, J Feng, P Song*, Y Zhao*, “Flexible and flame-retarding phosphorylated MXene/polypropylene composites for efficient electromagnetic interference shielding”, Journal of Materials Science & Technology2022, 111, 66-75.

  38. C Cheng, Z Wei*, J Gu, Z Wu, Y Zhao*, “Rational design of Janus nanofibrous membranes with novel under-oil superhydrophilic/superhydrophobic asymmetric wettability for water-in-diesel emulsion separation”, Journal of Colloid and Interface Science2022, 606, 1563-1571.

  39. X-Q Xie, J Liu, C. Gu, J Li*, Y Zhao*, C-S Liu*, “Hierarchical structured CoP nanosheets/carbon nanofibers bifunctional electrocatalyst for high-efficient overall water splitting”, Journal of Energy Chemistry2022, 64, 503-510.

  40. J Lu, G Gao, R Liu, C Cheng, T Zhang*, Z Xu*, Y Zhao*, “Emulsion-templated porous polymers: drying condition-dependent properties”, Soft Matter2021, 17, 9653.

  41. H Li, S Miao, W Chen, X Yang, M Li, T Xing, Y Zhao*, G Chen*, “Durable superhydrophobic and oleophobic cotton fabric based on the grafting of fluorinated POSS through silane coupling and thiol-ene click reaction”, Colloids and Surfaces A2021, 630, 127566.

  42. J Li, Y Zhang, R Shang, C Cheng, Y Cheng, J Xing, Z Wei*, Y Zhao*, “Recent advances in lithium-ion battery separators with reversible/irreversible thermal shutdown capability”, Energy Storage Materials2021, 43, 143-157.

  43. Z Wu, H Sun, Z Xu*, H Chi, X Li, S Wang, T Zhang*, Y Zhao*, “Underwater mechanically tough, elastic, superhydrophilic cellulose nanofiber-based aerogels for water-in-oil emulsion separation and solar steam generation”, ACS Applied Nano Materials2021, 4, 8979-8989.

  44. J Lu, T Zhang*, Z Xu, Y Zhao*, “Octadecane-cellulose nanofiber flexible composites for latent heat storage”, Chemical Engineering Journal2021, 425, 131432.

  45. H Chi, Z Xu*, Z Wei, T Zhang, H Wang, T Lin*, Y Zhao*, “Fabrics with novel air-oil amphibious, spontaneous one-way water-transport capability for oil/water separation”, ACS Applied Materials & Interfaces2021, 13, 29150-29157.

  46. B Jiang, T Zhang*, Z Xu, Y Zhao*, “Wet-spun porous fibers from high internal phase emulsions: Continuous preparation and high stretchability”, Journal of Polymer Science2021, 59, 1055-1064.

  47. H Li, S Tang, Q Zhou, W Chen, X Yang, T Xing, Y Zhao*, G Chen*, “Durable superhydrophobic cotton fabrics prepared by surface-initiated electrochemically mediated ATRP of polyhedral vinylsilsesquioxane and subsequent fluorination via thiol-Michael addition reaction”, Journal of Colloid & Interface Science2021, 593, 79-88.

  48. H Chi, Z Xu*, T Zhang, X Li, Z Wu, Y Zhao*, “Randomly heterogeneous oleophobic/pH-responsive polymer coatings with reversible wettability transition for multifunctional fabrics and controllable oil-water separation”, Journal of Colloid & Interface Science2021, 594, 122-130.

  49. F Khan, S Wang, Z Ma, A Adnan, P Song*, Z Xu, R Liu, H Chi, J Gu, L-C Tang, Y Zhao*, “A durable, flexible, large-area, flame-retardant early fire warning sensor with built-in patterned electrodes”, Small Methods2021, 5, 2001040.

  50. Z Wu, T Zhang*, H Zhang, R Liu, H Chi, X Li, S Wang, Y Zhao*, “One-pot fabrication of hydrophilic-oleophobic cellulose nanofiber-silane composite aerogels for selectively absorbing water from oil-water mixtures”, Cellulose2021, 28, 1443-1453.

  51. X Li, T Zhang*, Z Xu, H Chi, Z Wu, Y Zhao*, “Amphiphobic polyHIPEs with pH-triggered transition to hydrophilicity-oleophobicity for the controlled removal of water from oil-water mixtures”, Polymer Chemistry 2020, 11, 6935-6943.

  52. T Zhang*, Z Xu, X Li, G Gao, Y Zhao*, “Closed-cell, phase change material-encapsulated, emulsion-templated monoliths for latent heat storage: Flexibility and rapid preparation”, Applied Materials Today2020, 21, 100831.

  53. Q Guo, T Zhang*, Z Xu, X Li, Y Zhao*, “A single covalently grafted fluorolayer imparts intrinsically hydrophilic foams with simultaneous oleophobicity and hydrophilicity for removing water from oils”, Colloids and Surfaces A2020, 605, 125380.

  54. H Gui, S Ji, T Zhang*, Y Zhao*, Q Guo, “Nanofibrous, hypercrosslinked polymers with multiscale pores through post-crosslinking of emulsion-templated syndiotactic polystyrene aerogels”, European Polymer Journal2020, 135, 109880.

  55. X Yu, W Yang, Y Yang, X Wang, X Liu*, F Zhou, Y Zhao*, “Subsurface-initiated atom transfer radical polymerization: effect of graft layer thickness and surface morphology on antibiofouling properties against different foulants”, Journal of Materials Science2020, 55, 14544-14557.

  56. T Zhang*, Z Xu, H Chi, Y Zhao*, “Closed-cell, phase change material-encapsulated monoliths from a reactive surfactant-stabilized high internal phase emulsion for thermal energy storage”, ACS Applied Polymer Materials2020, 2, 2578-2585.

  57. Y Cheng, J Wang, M Li, F Fu, Y Zhao*, J Yu*, “Zwitterionic polymer-grafted superhydrophilic and superoleophobic silk fabrics for anti-oil applications”, Macromolecular Rapid Communications2020, 2000162.

  58. Z Wei*, J Gu, F Zhang, Z Pan, Y Zhao*, “Core-shell structured nanofibers for lithium ion battery separator with wide shutdown temperature window and stable electrochemical performance”, ACS Applied Polymer Materials2020, 2, 1989-1996.

  59. H Chi, Z Xu, Y Ma, T Tang, T Zhang, Y Zhao*, “Multifunctional highly oleophobic and superhydrophilic fabric coatings prepared by facile photopolymerization”, Advanced Sustainable Systems2020, 4, 2000049.

  60. X Yu, Y Yang, W Yang, X Wang, X Liu*, F Zhou*, Y Zhao*, “Solvent-driven migration of highly polar monomers into hydrophobic PDMS produces thick graft layer via subsurface initiated ATRP for efficient antibiofouling”, Chemical Communications2020, 56, 5030-5033.

  61. T Zhang, Y Zhao*, M S Silverstein*, “Cellulose-based, highly porous polyurethanes templated within non-aqueous high internal phase emulsions”, Cellulose 2020, 27, 4007-4018.

其他主要论文

  1. W Wang, R Liu, H Chi, T Zhang, Z Xu*, Y Zhao*, “Durable superamphiphobic and photocatalytic fabrics: Tackling the loss of super-non-wettability due to surface organic contamination”, ACS Applied Materials & Interfaces2019, 11, 35327-35332.

  2. T Zhang, X Li, W Wang, Z Xu, Y Zhao*, “Interface-initiated polymerization enabled a one-pot synthesis of hydrophilic and oleophobic foams through emulsion templating”, Macromolecular Rapid Communications2019, 40, 1900288.

  3. T Zhang*, H Gui, Z Xu, Y Zhao*, “Hydrophobic polyurethane polyHIPEs templated from mannitol within nonaqueous high internal phase emulsions for oil spill recovery”, Journal of Polymer Science Part A: Polymer Chemistry2019, 57, 1315-1321.

  4. A.P. Periyasamy, S.K. Rwahwire, S.R. Rwawiire, Y. Zhao, “Sustainable wastewater treatment methods for textile industry”, S. S. Muthu (ed.), Sustainable Innovations in Apparel Production, Textile Science and Clothing Technology, https://doi.org/10.1007/978-981-10-8591-8_2. Springer Nature Singapore Pte Ltd. 2018.(专著章节)

  5. A.P. Periyasamy, S.K. Rwahwire, Y. Zhao, “Environmental Friendly Textile Processing”, L.M.T. Martinez et al. (eds.), Handbook of Ecomaterials, ISBN: 978-3-319-48281-1. Springer International Publishing AG 2018. (专著章节)

  6. A Patil, Y Zhao*, X Liu*, X Wang, “Durable superhydrophobic and antimicrobial cotton fabrics prepared by electrostatic assembly of polyhexamethylene biguanide and subsequent hydrophobization”, Textile Research Journal2018, 88, 1788-1799.

  7. Y Zhao, H Wang, H Zhou, T Lin*, “Directional fluid transport in thin porous materials and its functional applications”, Small2017, 13, 1601070.

  8. Y Zhao, Z Xu, T Lin, “Barrier textiles for protection against microbes”, Antimicrobial Textiles, pp 225-245, DOI 10.1016/B978-0-08-100576-7.00012-2, Elsevier 2016. (专著章节)

  9. Z Xu, Y Zhao*, H Wang, H Zhou, C Qin, X Wang, T Lin*, “Fluorine-free superhydrophobic coatings with pH-induced wettability transition for controllable oil-water separation”, ACS Applied Materials & Interfaces2016, 8, 5661-5667.

  10. J Li, Y Zhao*, M Ge*, S Fu, T Lin, “Superhydrophobic and luminescent cotton fabrics prepared by dip-coating of APTMS modified SrAl2O4:Eu2+, Dy3+ particles in the presence of SU8 and fluorinated alkyl silane”, Journal of Rare Earths2016, 34, 653-660.

  11. Z Xu, Y Zhao*, H Wang, X Wang, T Lin, “A superamphiphobic coating with ammonia-triggered transition to superhydrophilic and superoleophobic for oil-water separation”, AngewandteChemie International Edition2015, 54, 4527-4530.

  12. Y Zhao, Z Xu, H Niu, X Wang, T Lin*, “Magnetic liquid marbles: Toward “lab in a droplet””, Advanced Functional Materials2015, 25, 437-444.

  13. Z Xu, Y Zhao*, L Dai, T Lin*, “Multi-responsive Janus liquid marbles: The effect of temperature and acidic/basic vapors”, Particle & Particle Systems Characterization2014, 31, 839-842.

  14. Y Zhao, Z Xu, X Wang, T Lin*, “Superhydrophobic and UV-blocking cotton fabrics prepared by layer-by-layer assembly of organic UV absorber intercalated layered double hydroxides”, Applied Surface Science2013, 286, 364-370.

  15. Y Zhao, Z Xu, X Wang, T Lin*, “Photoreactive azido-containing silica nanoparticle/polycation multilayers: Durable superhydrophobic coating on cotton fabrics”, Langmuir2012, 28, 6328-6335.

  16. Y Zhao, Z Xu, M Parhizkar, J Fang, X Wang, T Lin*, “Magnetic liquid marbles, their manipulation and application in optical probing”, Microfluidics and Nanofluidics2012, 13, 555-564.

  17. Y Zhao, W Yang, Y Xue, X Wang, T Lin*, “Partial exfoliation of layered double hydroxides in DMSO: a route to transparent polymer nanocomposites”, Journal of Materials Chemistry 2011, 21, 4869-4874.

  18. Y Zhao, J Fang, H Wang, X Wang, T Lin*, “Magnetic liquid marbles: Manipulation of liquid droplets using highly hydrophobic Fe3O4 nanoparticles”, Advanced Materials2010, 22, 707-710.

  19. Y Zhao, Y Tang, X Wang, T Lin*, “Superhydrophobic cotton fabric fabricated by electrostatic assembly of silica nanoparticles and its remarkable buoyancy”, Applied Surface Science 2010, 256, 6736-6742.

  20. Y Zhao, M Li, Q Lu*, Z Shi, “Superhydrophobic polyimide films with a hierarchical topography: Combined replica molding and layer-by-layer assembly”, Langmuir 2008, 24, 12651-12657.

  21. Y Zhao, M Li, Q Lu*, “Tunable wettability of polyimide films based on electrostatic self-assembly of ionic liquids”, Langmuir 2008, 24, 3937-3943.

  22. Y Zhao, M Li, Q Lu*, “Surface patterns induced by laser irradiation on thin polymer bilayer films”, Colloids and Surfaces A: Physicochem. Eng. Aspects 2008, 312, 47-55.

  23. Y Zhao, Q Lu*, M Li, X Li, “Anisotropic wetting characteristics on submicrometer scale periodic grooved surface”, Langmuir 2007, 23, 6212-6217.

  24. Y Zhao, Q Lu*, D Chen, Y Wei, “Superhydrophobic modification of polyimide films based on gold-coated porous silver nanostructures and self-assembled monolayers”, Journal of Materials Chemistry 2006, 16, 4504-4509.

  25. Y Zhao, Y-G Guo, Y-L Zhang*, K Jiao, “Fabrication and characterization of highly ordered Pt nanotubule arrays”, Physical Chemistry Chemical Physics 2004, 6, 1766-1768.

授权发明专利

  1. 高抗拉强度和高离子电导率的电纺锂电池隔膜及其制法.专利号:ZL 2021 1 1504452.X, 授权日:2024.3.22.

  2. 一种锂电池用纤维素隔膜的制备方法.专利号:ZL 2022 1 1046856.3, 授权日:2023.12.12.

  3. 一种柔性冰基蓄冷复合材料及其制备方法.专利号:ZL2022 1 1057674.6, 授权日:2023.7.25.

  4. 一种乳液基储热纤维及其制备方法.专利号:ZL 2022 1 0391326.6, 授权日:2023.6.27.

  5. 一种皮芯结构气凝胶纤维及其制备方法.专利号:ZL 2021 1 1467007.0, 授权日:2023.4.18.

  6. 一种调温纤维及其制备方法.专利号:ZL 2022 1 0080069.4,授权日:2022.12.30.

  7. 纤维素基多孔绝热材料及其制备方法.专利号:ZL 2021 1 1534841.7,授权日:2022.12.16.

  8. 一种可再生的亲水-疏油性多孔聚合物及其制备方法.专利号:ZL 2021 1 1616012.3, 授权日:2022.11.18.

  9. 一种可再生储热复合材料及其制备方法.专利号:ZL 2021 1 1565187.6,授权日:2022.11.18.

  10. 一种水性无氟超疏水纳米织物整理剂及其制备方法和应用.专利号:ZL 2019 1 0998628.8,授权日:2022.05.31.

  11. 一种锂电池隔膜用生物质纤维复合膜及其制备方法.专利号:ZL 2020 1 0417300.5,授权日:2022.05.20.

  12. 一种基于氧化石墨烯的阻燃涂层织物的制备方法及应用.专利号:ZL 2020 1 0983902.7,授权日:2022.04.15.

  13. 一种疏水吸湿织物涂层及其制备方法.专利号:ZL 2019112152313,授权日:2022.03.15.

  14. 亲水疏油三维多孔聚合物材料及其制备方法.专利号:ZL 202010676374.0,授权日:2022.03.11.

  15. 一种纤维素基柔性储热复合材料及其制备方法.专利号:ZL 202110603910.9,授权日:2022.03.01.

  16. 多孔纤维及其制备方法和应用.专利号:ZL 2020 1 0420099.6,授权日:2022.01.18.

  17. 一种用于油水乳液分离的复合纤维膜及其制备方法.专利号:ZL 2020 1 0709575.6,授权日:2021.12.31.

  18. 一种多功能涤纶面料及其制备方法.专利号:ZL 201910290429.1,授权日:2021.11.05.

  19. 一种耐穿刺纤维复合膜及其制备方法.专利号:ZL 2020 1 0417382.3,授权日:2021.10.08.

  20. 双面疏油的超疏水-超亲水Janus型材料的制备方法及应用.专利号:ZL 201911100294.4,授权日:2021.09.21.

  21. 具有疏油性和pH响应性的多孔聚合物及其制备和应用.专利号:ZL 201911060122.9,授权日:2021.08.24.

  22. 亲水-疏油的纤维素硅烷偶联剂复合气凝胶的制备方法.专利号:ZL 201910635682.6,授权日:2021.08.06.

  23. pH响应性疏水疏油-亲水疏油可逆转变材料的制备及应用.专利号:ZL 201911071280.4,授权日:2021.08.03.

  24. 亲水疏油性多孔聚合物及其制备方法. 专利号:ZL 2019 1 0446326.X授权日:2021.05.18.

  25. 纤维素基多孔聚合物及其制备方法. 专利号:ZL 2019 1 0553503.4授权日:2021.04.13.

  26. 一种水滴铺展时间可控的亲水-疏油涂层及其制备方法. 专利号:ZL 2018 1 0885147.1授权日:2021.05.14.

  27. 一种锂离子电池隔膜及其制备方法.专利号:ZL 2019 1 0767161.6授权日:2021.01.15.

  28. 一种自愈合型超双疏和光催化双重自清洁涂层及其制备方法. 专利号:ZL 2018 1 0866481.2授权日:2020.09.15.

国际交流与合作

与新加坡南洋理工大学,澳大利亚迪肯大学,澳大利亚南昆士兰大学等保持紧密科研合作。

联系方式

E-mail: yanzhao@suda.edu.cn