化学与化工学院-万骏导师介绍

更新于 2026-02-26 导师主页
万骏 副教授 硕士生导师
化学与化工学院
材料与化工 ,化学 ,材料与化工 ,化学
红外热管理,电催化,功能纤维,月壤
wanj@wtu.edu.cn

万骏,武汉纺织大学特聘教授,化学与化工学院院长助理,应化系副主任。湖北省高层次人才、武汉市青年科技计划。华中科技大学本科、直博(导师周军教授杰青、王中林院士)、博士后(导师唐江教授杰青)。国家公派新加坡南洋理工大学访问学者(导师Prof. Seok Woo Lee)。纺织新材料与先进加工全国重点实验室 徐卫林 院士团队骨干成员。以电催化与功能纤维材料为核心,聚焦纤维降解、航天热管理及月壤相关研究,承担团队嫦娥五号月壤项目的2名执行负责人之一。主持国家自科基金、省自科基金、省教育厅、国家重点实验室、企业合作等科研项目10余项。一作及通讯作者在One Earth、Angew. Chem. Int. Ed.等学术期刊发表论文50余篇。主编国际专著2部,授权中国发明专利4件。担任新加坡Viser材料专家委员会委员、湖北省化学化工学会委员、市重点研发项目评审专家等;Nano-Micro Letters、Research、Carbon Energy等期刊青年编委。荣获Young Scientist Award、湖北省化学化工先进青年工作者、青年五四奖章、最美教师等。

个人官方主页:https://fzcljs.wtu.edu.cn/info/1095/1751.htm


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科研项目

学习经历:

2012.9-2017.6

华中科技大学    武汉光电国家研究中心   工学博士(物理电子学)

2008.9-2012.6

华中科技大学    化学与化工学院         工学学士(化学工程与工艺)

 

工作经历:

2022.3-至今

武汉纺织大学            特聘教授

2023.1-2024.1

新加坡南洋理工大学      访问学者

2020.12-2022.3

武汉纺织大学            副教授

2019.9-2020.12

武汉纺织大学            讲师

2017.9-2019.9

华中科技大学            博士后(光学工程)

 

任职经历:

2024.3-至今

武汉纺织大学化工学院    科研助理

2022.6-至今

武汉纺织大学化工学院    副系主任

2020.9-至今

武汉纺织大学化工学院    党支部组织委员

2012.7-2014.7

武汉光电国家研究中心    党支部副书记

2011.9-2012.6

华中科技大学化工学院    毕业辅导员(兼任)


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研究成果

近五年,以第一/通讯作者在One Earth、Angewandte Chemie International Edition、Nano-Micro Letters、Applied Catalysis B: Environment and Energy、InfoMat、Applied Physics Reviews、Journal of Energy Chemistry、Chinese Journal of Catalysis、Green Chemistry等国际权威期刊发表学术论文45篇(其中2026年已发表7篇;2025年17篇;2024年10篇;2022-2023年11篇)。论文列表如下:

u 2026年(7篇)

[1]       Hanyuan Zhang, Zhenhui Huang, Changyuan Chen, Yi Long*, Weilin Xu, Zhengui Zhou*, Jun Wan*, Mid-Infrared Transparent Materials: from Mechanisms to Cutting-Edge Applications. Nano-Micro Letters 2026, n/a. DOI :10.1007/s40820-026-02113-y. (IF=36.3)

[2]       Mingjie Wang, Yutong Feng, Jiao Dai, Bohao Chang, Linai Zhou, Weilin Xu, Yujie Ma*, Jun Wan*, Phase Diversity Driven Mechanistic Landscapes for Nitrate to Ammonia Electrosynthesis. Journal of Hazardous Materials 2026, 505, 141470 (IF=13.3)

[3]       Mingjie Wang, Hanyuan Zhang, Jiao Dai, Bohao Chang, Kaisi Liu, Weilin Xu, Yujie Ma, Jun Wan*, Non-Equilibrium Construction of Layered Ruddlesden–Popper La2NiO4 Porous Nanosheets for Efficient Urea Electrooxidation. Carbon Neutralization 2026, 5, e70132. (IF=12)

[4]       Qi Liu, Ziyuan Zhu, Hanyuan Zhang, Linai Zhou, Hanqi Su, Weilin Xu, Hui Wang, Jun Wan*, Advanced Warming Textiles for Personalized Thermal Management through Radiative, Insulating, and Electrothermal Strategies. Materials Today Energy 2026, 56, 102192 (IF=8.6)

[5]       Zhou Linai, Feng Jiamu, Zhu Kean, Gao Lingfeng, Xu Weilin, Wang Hui, Wan Jun*, Crystallographic Symmetry-Governed Oxygen-Defect Chemistry in Perovskite Oxides for Electrocatalytic Water Splitting. Materials Matter 2026, 1, 1.

[6]       Tianqi Guan, Hanyuan Zhang, ZiYuan Zhu, Yumei Xiang, Weilin Xu, Hui Wang, Jun Wan*, Jing Tang*, Emergent Phase Architectures in 2D Materials for Multimodal Cancer Therapy. Materials Today Chemistry 2026, 52, 103413 (IF=6.7)

[7]       Tianqi Ma, Mincan Yang, Jiamu Feng, Linai Zhou, Weilin Xu, Eryang Mao*, Jun Wan*, Spinel Oxide Crystallography Governing Lattice-Coupled Water-Redox Electrocatalysis. Smart Mater Devices 2026, 2, n/a.

 

u 2025年(17篇)

[1]       Zhiao Wu; Miao Fan; Huiyu Jiang; Jiao Dai; Kaisi Liu; Rong Hu; Shutong Qin; Weilin Xu; Yonggang Yao*; Jun Wan*, Harnessing the Unconventional Cubic Phase in 2D LaNiO3 Perovskite for Highly Efficient Urea Oxidation. Angewandte Chemie International Edition 2025, 64, e202413932. DOI: 10.1002/anie.202413932. (IF=16.9)

[2]      Xiaorui Ma; Zhiao Wu; Haoran Tian; Guangyu Fang; Jiao Dai; Tianpeng Ding; Weilin Xu; Huanyu Jin*; Xu Xiao*; Jun Wan*, Durable Coaxial Fiber-Based Underwater Strain Sensor with Reversible Dry-Wet Transition. InfoMat 2025, e70030. DOI: 10.1002/inf2.70030. (IF=22.7)

[3]      Miao Fan; Haoran Tian; Zhiao Wu; Jiao Dai; Xiaorui Ma; Yongfei You; Jingru Huang; Yutong Feng; Wanting Ding; Huiyu Jiang; Weilin Xu; Huanyu Jin*; Jun Wan*, Microwave Shock Synthesis of Porous 2D Nonlayered Transition Metal Carbides for Efficient Hydrogen Evolution. SusMat 2025, e252. DOI: 10.1002/sus2.252. (IF=21.3)

[4]      Jiao Dai; Jinglin Xian; Kaisi Liu; Zhiao Wu; Miao Fan; Shutong Qin; Huiyu Jiang; Weilin Xu; Huanyu Jin*, Jun Wan*, Unconventional Metastable Cubic 2D LaMnO3 for Efficient Alkaline Seawater Oxygen Evolution. Chinese Journal of Catalysis 2025, 74, 228. (IF=17.7)

[5]      Liyun Wei; Jiao Dai; Shutong Qin; Mingjie Wang; Ziyuan Zhu; Weilin Xu; Kaisi Liu; Jun Wan*, Two-Dimensional materials for high-current-density seawater electrolysis. Green Chemistry 2025, DOI: 10.1039/D5GC01687H. (IF=9.2)

[6]      Tianqi Guan, Mingjie Wang, Hanyuan Zhang, Shutong Qin, Yutong Feng, Jiao Dai, Weilin Xu, Jun Wan*, Huanyu Jin*, Engineering 2D Materials for High-Current-Density Electrocatalytic Water Splitting. Rare Metals 2025, n/a, e70070. (IF=11.0)

[7]      Guangyu Fang; Xiaorui Ma; Rong Hu; Jiao Dai; Haoran Tian; Lin Li*; Weilin Xu; Yonggang Yao*, Jun Wan*, Horizontally Oriented 2D Skin Structures on Fiber Interface for Long–Life Flexible Energy Storage Devices. Chemical Engineering Journal 2025, 161557. DOI: 10.1016/j.cej.2025.161557. (IF=13.4)

[8]      Ruiyao Xu, Ziyuan Zhu, Hanyuan Zhang, Wenhui Fan, Tianqi Guan, Yuqi Wei, Weilin Xu, Bin Hu*, Jun Wan*, Synergistic Material–Structure Engineering for Mid-Infrared Thermal Management in Textiles. Small 2025, 21, e09257. (IF=12.1)

[9]      Jingru Huang; Haoran Tian; Hanyuan Zhang; Zhenhui Huang; Yi Long; Weilin Xu; Zhengui Zhou*; Jun Wan*, Engineering Materials and Structural Paradigms for mid-infrared thermal management. Materials Today Energy 2025, 101944. DOI: 10.1016/j.mtener.2025.101944. (IF=8.6)

[10]   Shutong Qin; Jiao Dai; Haoran Tian; Hanyuan Zhang; Jingru Huang; Tianqi Guan; Weilin Xu; Jun Wan*, 3D Printing Driving Innovations in Extreme Low–Temperature Energy Storage. Virtual and Physical Prototyping 2025, 20, e2459798. DOI: 10.1080/17452759.2025.2459798. (IF=10.2)

[11]   Shutong Qin; Jiao Dai; Mingjie Wang; Hanyuan Zhang; Shihao Cheng; Weilin Xu; Jun Wan*; Huanyu Jin*, Unleashing the Potential of Metastable Materials in Electrocatalytic Water Splitting. ACS Materials Letters 2025, 7, 524. DOI: 10.1021/acsmaterialslett.4c02197. (IF=9.9)

[12]   Jiao Dai; Mingjie Wang; Haoran Tian; Wenhui Fan; Kaisi Liu; Weilin Xu; Huiyu Jiang*; Huanyu Jin*; Jun Wan*, Microwave Shock–Driven Thermal Engineering of Unconventional Cubic 2D LaMnO3 for Efficient Oxygen Evolution. Journal of Materials Chemistry A 2025, 13, 31002. DOI: 10.1039/D5TA01034A (IF=10.8)

[13]   Yutong Feng; Jiao Dai; Mingjie Wang; Wanting Ding; Hanyuan Zhang; Weilin Xu; Jun Wan*, Unraveling Metastable Perovskite Oxides Insights from Structural Engineering to Synthesis Paradigms. Microstructures 2025, 5. DOI: 10.20517/microstructures.2024.115. (IF=9.0)

[14]   Jingru Huang; Haoran Tian; Hanyuan Zhang; Ziyuan Zhu; Shutong Qin; Weilin Xu; Jun Wan*, Two-dimensional materials for enhanced mid-infrared thermal management. 2D Materials 2025, 12, 032003. (IF=4.5)

[15]   Shihao Cheng, Hanyuan Zhang, Ziyuan Zhu, Shutong Qin, Linai Zhou, Yuqi Wei, Weilin Xu, Jun Wan*, Bin Hu*, Opaque, Transparent, and Colored Low-Emissivity Materials for Mid-Infrared Thermal Management. Journal of Materials Chemistry A 2025, 13, 38585. (IF=10.8)

[16]   Yutong Feng, Mingjie Wang, Hanyuan Zhang, Shutong Qin, Tianqi Guan, Bohao Chang, Weilin Xu, Yujie Ma*, Jun Wan*, Engineering Electrocatalytic Structures through Molten Salt-Mediated Mechanistic Control. EcoEnergy 2025, 3, e70022.

[17]   Haoran Tian, Hanyuan Zhang, Ziyuan Zhu, Jiao Dai, Shutong Qin, Ruiyao Xu, Weilin Xu, Jun Wan*, Near-Unity Solar Reflectance and Mid-Infrared Transparency Via Microwave-Engineered 2d Y2o3 for Passive Radiative Cooling. Journal of Materials Chemistry A 2025, 13, 39330. (IF=10.8)

 

u 2024年(10篇)

[1]      Minghui Ning#; Sangni Wang#; Jun Wan#; Zichao Xi; Qiao Chen; Huimin Yu; Yuanmiao Sun; Hui Li; Tianyi Ma*; Huanyu Jin*, Dynamic Active Sites in Electrocatalysis. Angewandte Chemie International Edition 2024, 63, e202415794. DOI: 10.1002/anie.202415794. (IF=16.9)

[2]      Jinglin Xian; Huiyu Jiang; Zhiao Wu; Huimin Yu; Kaisi Liu; Miao Fan; Rong Hu; Guangyu Fang; Liyun Wei; Jingyan Cai; Weilin Xu; Huanyu Jin*; Jun Wan*, Microwave Shock Motivating the Sr Substitution of 2D Porous GdFeO3 Perovskite for Highly Active Oxygen Evolution. Journal of Energy Chemistry 2024, 88, 232. DOI: 10.1016/j.jechem.2023.09.016. (IF=14.9)

[3]      Jun Wan; Zhiao Wu; Guangyu Fang; Jinglin Xian; Jiao Dai; Jiayue Guo; Qingxiang Li; Yongfei You; Kaisi Liu; Huimin Yu; Weilin Xu; Huiyu Jiang*; Minggui Xia*, Huanyu Jin*, Microwave–Assisted Exploration of the Electron Configuration–Dependent Electrocatalytic Urea Oxidation Activity of 2D Porous NiCo2O4 Spinel. Journal of Energy Chemistry 2024, 91, 226. DOI: 10.1016/j.jechem.2023.12.017. (IF=14.9)

[4]      Jingyan Cai; Zhiao Wu; Sangni Wang; Jiayue Guo; Miao Fan; Weilin Xu; Huanyu Jin*; Jun Wan*, Exploring Advanced Microwave Strategy for the Synthesis of Two–Dimensional Energy Materials. Applied Physics Reviews 2024. DOI: 10.1063/5.0231081. (IF=11.9)

[5]      Jun Wan; Guangyu Fang; Shiyun Mi; Huimin Yu; Jinglin Xian; Miao Fan; Zhiao Wu; Liyun Wei; Xiaorui Ma; Jingyan Cai; Yongfei You; Dawei Wang; Weilin Xu; Huiyu Jiang*; Huanyu Jin*, Metastable 2D Amorphous Nb2O5 for Aqueous Supercapacitor Energy Storage. Chemical Engineering Journal 2024, 488, 150912. DOI: 10.1016/j.cej.2024.150912. (IF=13.4)

[6]      Kaisi Liu; Tongtong Liu; Xinyi Wu; Jiao Dai; Qingjun Chen; Jun Wan*; Lei Liu*, Frustrated Lewis Pair Chemistry in 2D CeO2 for Efficient Alkaline Hydrogen Evolution. Journal of Materials Chemistry A 2024, 12, 28843. DOI: 10.1039/D4TA06191H. (IF=10.8)

[7]      Zhiao Wu; Jinglin Xian; Jiao Dai; Guangyu Fang; Miao Fan; Haoran Tian; Jiayue Guo; Zhenhui Huang; Huiyu Jiang; Weilin Xu; Jun Wan*, Microwave–Pulse Synthesis of Tunable 2D Porous Nickel–Enriched LaMnxNi1−xO3 Solid Solution for Efficient Electrocatalytic Urea Oxidation. Journal of Materials Chemistry A 2024, 12, 7047. DOI: 10.1039/D4TA00235K. (IF=10.8)

[8]      Qingxiang Li; Guangyu Fang; Zhiao Wu; Jiayue Guo; Yongfei You; Huanyu Jin*; Jun Wan*, Advanced Microwave Strategies Facilitate Structural Engineering for Efficient Electrocatalysis. ChemSusChem 2024, 17, e202301874. DOI: 10.1002/cssc.202301874. (IF=7.5)

[9]      Miao Fan; Jiayue Guo; Guangyu Fang; Haoran Tian; Yongfei You; Zhenhui Huang; Jingru Huang; Huiyu Jiang; Weilin Xu; Jun Wan*, Microwave–Pulse Assisted Synthesis of Tunable Ternary–Doped 2D Molybdenum Carbide for Efficient Hydrogen Evolution. Chemical Synthesis 2024, 4, 36. DOI: 10.20517/cs.2023.72.

[10]   Yongfei You; Guangyu Fang; Miao Fan; Jiayue Guo; Qingxiang Li; Jun Wan*, Leveraging Novel Microwave Techniques for Tailoring the Microstructure of Energy Storage Materials. Microstructures 2024, 4, 2024035. DOI: 10.20517/microstructures.2023.86. (IF=9.0)

 

u 2022-2023年(11篇)

[1]      Huimin Yu; Jun Wan*; Michael Goodsite; Huanyu Jin*, Advancing Direct Seawater Electrocatalysis for Green and Affordable Hydrogen. One Earth 2023, 6, 267. DOI: 10.1016/j.oneear.2023.02.003. (IF=15.3)

[2]      Rong Hu; Huiyu Jiang; Jinglin Xian; Shiyun Mi; Liyun Wei; Guangyu Fang; Jiayue Guo; Siqi Xu; Ziyang Liu; Huanyu Jin*; Weilin Xu; Jun Wan*, Microwave-Pulse Sugar-Blowing Assisted Synthesis of 2D Transition Metal Carbides for Sustainable Hydrogen Evolution. Applied Catalysis B: Environmental Energy 2022, 317, 121728. (IF=21.1)

[3]      Huiyu Jiang; Jinglin Xian; Rong Hu; Shiyun Mi; Liyun Wei; Guangyu Fang; Zhiao Wu; Siqi Xu; Mingzhao Fan; Kaisi Liu; Huimin Yu*; Weilin Xu; Jun Wan*, Microwave Discharge for Rapid Introduction of Bimetallic–Synergistic Configuration to Conductive Catecholate toward Long–Term Supercapacitor. Chemical Engineering Journal 2023, 455, 140804. DOI: 10.1016/j.cej.2022.140804. (IF=13.4)

[4]      Guangyu Fang; Kaisi Liu; Miao Fan; Jinglin Xian; Zhiao Wu; Liyun Wei; Haoran Tian; Huiyu Jiang; Weilin Xu; Huanyu Jin*; Jun Wan*, Unveiling the Electron Configuration–Dependent Oxygen Evolution Activity of 2D porous Sr–substituted LaFeO3 Perovskite through Microwave Shock. Carbon Neutralization 2023, 2, 709. DOI: 10.1002/cnl2.94. (IF=12.0)

[5]      Rong Hu; Liyun Wei; Jinglin Xian; Guangyu Fang; Zhiao Wu; Miao Fan; Jiayue Guo; Qingxiang Li; Kaisi Liu; Huiyu Jiang; Weilin Xu; Jun Wan*; Yonggang Yao*, Microwave Shock Process for Rapid Synthesis of 2D Porous La0.2Sr0.8CoO3 Perovskite as an Efficient Oxygen Evolution Reaction Catalyst. Acta Physico–Chimica Sinica 2023, 39, 2212025. DOI: 10.3866/pku.whxb202212025. (IF=13.5)

[6]      Dazhi Yao; Yanzhao Zhang; Shilin Zhang; Jun Wan*; Huimin Yu*; Huanyu Jin*, Hybrid Water Electrolysis with Integrated and Cascading Reactions using Two–Dimensional Electrocatalysts. Journal of Materials Chemistry A 2023, 11, 16433. DOI: 10.1039/D3TA01931D. (IF=10.8)

[7]      Jun Wan; Rong Hu; Junfeng Li; Shiyun Mi; Jinglin Xian; Zhiheng Xiao; Ziyang Liu; Aojie Mei; Siqi Xu; Mingzhao Fan; Huiyu Jiang*; Qian Zhang*; Huihong Liu*; Weilin Xu, A Universal Construction of Robust Interface Between 2D Conductive Polymer and Cellulose for Textile Supercapacitor. Carbohydrate Polymers 2022, 284, 119230. (IF=10.7)

[8]      Jun Wan; Guoqun Zhang; Hongrun Jin; Jiabin Wu; Nian Zhang; Bin Yao; Kaisi Liu; Meilin Liu; Tonghuan Liu*; Liang Huang*, Microwave-Assisted Synthesis of Well-Defined Nitrogen Doping Configuration with High Centrality in Carbon to Identify the Active Sites for Electrochemical Hydrogen Peroxide Production. Carbon 2022, 191, 340. (IF=10.5)

[9]      Bo Wang; Simin Dai; Zehao Zhu; Lin Hu; Zhen Su; Yingzhi Jin; Liukang Xiong; Jiasong Gao; Jun Wan*; Zaifang Li*; Liang Huang*, A two-dimensional conductive polymer/V2O5 composite with rapid zinc-ion storage kinetics for high-power aqueous zinc-ion batteries. Nanoscale 2022, 14, 12013. (IF=5.8)

[10]   Huiyu Jiang; Zeyu Ouyang; Rong Hu; Jun Wan*; Junjiang Zhu*, Self-cleaning Finishing of Cotton Fabric with TiO2/Ag2S/rGO Composite. Fibers and Polymers 2022, 23, 254. (IF=2.2)

[11]   Rong Hu; Huiyu Jiang; Jinglin Xian; Shiyun Mi; Liyun Wei; Guangyu Fang; Jiayue Guo; Siqi Xu; Ziyang Liu; Huanyu Jin; Huimin Yu*; Jun Wan*, Pearson's Principle-Inspired Robust 2D Amorphous Ni-Fe-Co Ternary Hydroxides on Carbon Textile for High-Performance Electrocatalytic Water Splitting. Nanomaterials 2022, 12, 2416. (IF=4.4)


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学校介绍

武汉纺织大学在新中国振兴民族轻工业的呼声中应运而生,其前身是始建于1958年的武汉纺织工学院,1999年更名为武汉科技学院。湖北省对外贸易学校、湖北财经高等专科学校先后并入,2010年更名为武汉纺织大学。

学校秉承“崇真尚美”的校训,弘扬“自强不息、经天纬地”的大学精神,坚持特色发展,实行开放办学,主动服务纺织行业和地方经济社会发展,历经六十余载,已成为理、工、文、法、经、管、艺等多学科协调发展、特色鲜明、优势突出的普通高等院校,是国家首批“中西部高校基础能力建设工程”建设高校、教育部“卓越工程师教育培养计划”实施高校、湖北省“国内一流学科”建设高校、全国十大时装名校,致力于建设学术实力强、育人环境美、文化氛围浓、师生认可高、社会声誉好的美好纺大。

学校位于湖北省武汉市,占地2000余亩,拥有四个校区,设有20个教学院部,各级各类全日制在校生20000余人。现有本科专业67个,其中国家特色专业4个、国家级一流专业建设点11个,教育部工程教育认证专业2个、“卓越工程师教育培养计划”专业8个,湖北省品牌专业7个、省级一流专业建设点16个;拥有15个硕士学位授权一级学科、9个硕士专业学位授权类别,七大学科门类;拥有8个湖北省一级重点学科、5个省优势和特色学科,“现代纺织技术”和“时尚创意文化”2个学科群列入湖北省“十三五”省属高校优势特色学科群重点建设,纺织科学与工程入选湖北省“国内一流学科建设学科”。材料科学、化学、工程学3个学科进入ESI全球排名前1%。

学校实施人才高地汇聚工程。坚持引育并重,打造一支有理想信念、有道德情操、有扎实学识、有仁爱之心的“四有”好老师队伍,是首批“湖北省海外高层次人才创新创业基地”。学校现有教职员工2000余人,专任教师1300余人,其中具有高级职称教师700余人,博士700余人。长期在校工作的院士、外籍院士7人,其中自主培养俄罗斯自然科学院院士1人;国家级人才10人,省级各类人才200余人,享受国务院政府特殊津贴38人,享受湖北省政府专项津贴12人;拥有一批具有海外学习背景的“阳光学者”。

学校实施人才培养质量工程。坚持立德树人,以本为本,推进“四个回归”,实施人才培养能力提升三年行动计划,完善“五育并举”育人格局,构建“产出导向”的人才培养体系,大力开展“新工科、新文科”建设,着力培养“知识、能力、品格”协调发展的应用型创新人才。学校整体进入一本招生,拥有国家级教学团队和国家级人才培养模式改革实验区,国家级一流本科课程2门,国家精品开放课程6门,获批教育部新工科研究与实践项目1项;近几年获得国家高等学校教学成果二等奖2项,省部级教学成果一等奖11项。学校大力实施创新创业教育,实行“前创后厂”模式,建有湖北省大学生创新创业示范基地,学生的创新能力、实践能力和综合素质等不断提高,在各类国家级、省级学科竞赛中取得丰硕成果。

学校实施科技实力攀登工程。注重技术创新,培育重大科研成果,推进成果转化,不断提升科技竞争力。拥有纺织新材料与先进加工技术国家重点实验室,还拥有国家地方联合工程实验室、教育部重点实验室、教育部工程研究中心、全国普通高校中华优秀传统文化传承基地及一批省级重点研究基地。相继承担国家基金项目、“973”、“863”项目和重点支撑计划等国家和省部级重大科研课题近200项,一批科研成果达到国际国内先进水平,在纺织、印染、服装和艺术等方面具有鲜明的特色和优势。近几年学校荣获国家科学技术进步一等奖1项、二等奖3项,国家技术发明二等奖2项。学校与纺织服装产业集中地区共建产学研“根据地”,一批校地、校企合作项目在湖北、安徽、江苏、浙江、山东等地落地,服务社会能力显著增强。

学校大力加强国际交流与合作。注重引进国外优质教育资源,积极发展留学生教育,不断提升国际化水平。是“欧洲纺织大学联盟”第一个中国大陆成员、“英国纺织学会”“美国纤维学会”理事成员、“一带一路”纺织高等教育联盟发起单位、“一带一路”世界纺织大学联盟理事单位、中国-中东欧国家(17+1)高校联盟地方合作高校,中国政府奖学金委托培养院校和英国纺织学会中国地区办公室依托单位。学校建有教育部首个行业中外人文交流研究院——纺织行业中外人文交流研究院。学校拥有湖北省第一个本科层次中外合作办学机构——武汉纺织大学伯明翰时尚创意学院。与英国曼彻斯特大学、日本文化学园大学开展了本科层次的合作办学项目,与澳大利亚、美国、俄罗斯、捷克有关高校联合培养博士生,并与英国、美国、法国、德国、澳大利亚、俄罗斯、日本、韩国等国家近200所大学签署了国际交流合作协议。学校长期承办由中国商务部和联合国贸易与发展会议联合主办的“发展中国家服务贸易”国际研修班,获批多项“世界著名科学家来鄂讲学计划”项目,连续多年主办和承办各类大型国际学术会议,学校国际化进程稳步推进。

潮平两岸阔,风正一帆悬。武汉纺织大学与时代发展同步伐、与民族工业共命运,坚持服务社会之道,谋求特色发展之路,为振兴民族工业和湖北省经济社会发展做出了重要的贡献。“十四五”时期,学校将立足新发展阶段,贯彻新发展理念,融入新发展格局,坚持系统观念,统筹事业发展与安全,以立德树人为根本,以学生为中心,全面加强党的领导、全面深化综合改革、全面推进依法治校、全面提高人才培养质量,着力培养应用型创新人才,提升科技创新和成果转化能力,为区域经济社会发展和纺织行业转型升级做出新的更大贡献。


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1.我校研究生奖助体系健全,设有国家层面、行业层面、社会层面及学校层面等四大类共10余种奖助学金。详情如下:

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2.学校同时实施“四鹰计划”,符合相关条件者均可申请相应奖助:


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