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个人简介

赵燕,特聘教授、博士生导师国家海外高层次人才引进计划青年项目获得者(2017);江苏省双创人才项目获得者(2018);澳大利亚研究理事会(ARCAustralian PostdoctoralFellowshipAPD获得者(2011);上海市优秀博士学位论文奖(2009)及全国优秀博士学位论文提名奖(2010)获得者。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加入苏州大学。至今已主持各类科研项目10余项;发表论文110余篇,其中70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, J. Power Sources, Carbohydr. Polym., J. Mater. Chem., ACS Appl. Mater. Interfaces, J. Colloid Interface Sci.等期刊,研究成果相关引用4500余次,h指数35;出版专著章节4篇;已获授权中国发明专利20余件。

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:前沿技术讲座,博士生应用英语

主要项目

    1. 国家重点研发计划高端功能与智能材料专项子课题,2022-2025,课题骨干。

    2. 横向合作项目(P111501221150万元),2021-20241/1

    3. 横向合作项目(P11150132020万元),2020-20231/1

    4. 国家自然科学青年基金(5170314925万元)2018-20201/1

    5. 国家海外高层次人才引进计划青年项目,20171/1

    6. 澳大利亚研究理事会(ARCDiscovery ProjectDP150100406$236,7002015-2017,主申请人(Chief Investigator),2/3

    7. 澳大利亚棉花研发协会(CRDC)研究项目(14-15FRP082$299,5002014-2017,主申请人(Chief Investigator),2/2

    8. 澳大利亚研究理事会(ARCDiscovery ProjectDP110101315$255,0002011-2014,主申请人(Chief Investigator),1/1

近五年的主要论文

  1. 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.

  2. 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.

  3. 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.

  4. 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.

  5. 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.

  6. 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.

  7. 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.

  8. 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.

  9. 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.

  10. 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.

  11. 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.

  12. 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.

  13. 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.

  14. 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.

  15. 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.

  16. 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.

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

  18. 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.

  19. 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.

  20. 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.

  21. 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.

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

  23. 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.

  24. 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.

  25. 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.

  26. 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.

  27. 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.

  28. 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.

  29. 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.

  30. 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.

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

  32. 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.

  33. 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.

  34. 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.

  35. 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.

  36. 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.

  37. 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.

  38. 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.

  39. 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.

  40. 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.

  41. 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.

  42. 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.

  43. 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.

  44. 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.

  45. 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.

  46. 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.

  47. 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.

  48. 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.

  49. 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.

  50. 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.

  51. 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.

其他主要论文

  1. 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)

  2. 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)

  3. 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.

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

  5. 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)

  6. 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.

  7. 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.

  8. 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.

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

  10. 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.

  11. 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.

  12. 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.

  13. 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.

  14. 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.

  15. 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.

  16. 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.

  17. 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.

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

  19. 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.

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

  21. 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.

  22. 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. 一种皮芯结构气凝胶纤维及其制备方法.专利号:ZL202111467007.0, 授权日:2023.4.18.

  2. 一种调温纤维及其制备方法.专利号:ZL202210080069.4,授权日:2022.12.30.

  3. 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:ZL202111616012.3, 授权日:2022.11.18.

  4. 一种可再生储热复合材料及其制备方法.专利号:ZL202111565187.6,授权日:2022.11.18.

  5. 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:ZL201910998628.8,授权日:2022.05.31.

  6. 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:ZL202010983902.7,授权日:2022.04.15.

  7. 一种疏水吸湿织物涂层及其制备方法.专利号:ZL2019112152313,授权日:2022.03.15.

  8. 亲水疏油三维多孔聚合物材料及其制备方法.专利号:ZL202010676374.0,授权日:2022.03.11.

  9. 一种纤维素基柔性储热复合材料及其制备方法.专利号:ZL202110603910.9,授权日:2022.03.01.

  10. 多孔纤维及其制备方法和应用.专利号:ZL202010420099.6,授权日:2022.01.18.

  11. 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:ZL202010709575.6,授权日:2021.12.31.

  12. 一种多功能涤纶面料及其制备方法.专利号:ZL201910290429.1,授权日:2021.11.05.

  13. 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:ZL201911100294.4,授权日:2021.09.21.

  14. 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:ZL201911060122.9,授权日:2021.08.24.

  15. 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:ZL201910635682.6,授权日:2021.08.06.

  16. 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:ZL201911071280.4,授权日:2021.08.03.

  17. 亲水疏油性多孔聚合物及其制备方法. 专利号:ZL201910446326.X授权日:2021.05.18.

  18. 纤维素基多孔聚合物及其制备方法. 专利号:ZL201910553503.4授权日:2021.04.13.

  19. 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:ZL201810885147.1授权日:2021.05.14.

  20. 一种锂离子电池隔膜及其制备方法.专利号:ZL201910767161.6授权日:2021.01.15.

  21. 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:ZL201810866481.2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