科研項目

近五年主持重要項目:

1. 國家高層次青年人才計劃(2022-2024)

2. 國家自然科學基金面上項目(2023-2026)

3. 國家自然科學基金面上項目(2021-2024)

4. 國家自然科學基金青年基金(2016-2018)

5. 國家重點研發計劃課題(2022-2025)

6. 國家重點研發計劃課題(2016-2020)

7. 上海市自然科學基金原創探索項目(2020-2023)

8. 上海市優秀學術帶頭人計劃(2021-2024)

9. 上海高校特聘教授崗位計劃(2016-2019)

10. 上海市青年科技啟明星計劃(2016-2019)

11. 教育部紡織面料技術重點實驗室重點項目(2019)

12. 中央高校基本科研業務費專項資金重點計劃項目(2016-2018)

13. 美的集團技術開發合作項目(2019-2020)

14. 北京寶潔技術有限公司技術服務項目(2019-2020)

15. 上海泓濟環保科技股份有限公司技術服務項目(2021)

16. 斐樂體育有限公司技術開發項目(2022-2024)

17. 中國建築第八工程局有限公司技術開發項目(2022-2024)


代表論文

迄今以第一/通訊作者在Nat. Commun.、ACS Nano、Adv. Funct. Mater.、Mater. Today等期刊上發表SCI論文60餘篇(ESI高被引論文5篇),論文總共被引3500餘次,H因子為37。

近五年代表性SCI論文:(*代表通訊作者)

[1]. Y. Zhang, L. Wu, 王先鋒*, J. Yu, and B. Ding*, Super Hygroscopic Nanofibrous Membrane-Based Moisture Pump for Solar-Driven Indoor Dehumidification, Nature Communications, 2020, 11, 3302. (IF 14.91,一區)

[2]. C. Wang, N. Meng, A. Babar, X. Gong, G. Liu, 王先鋒*, J. Yu, B. Ding*. Highly transparent nanofibrous membranes used as transparent masks for efficient PM0.3 removal, ACS Nano, 2022, 16, 119-128. (IF 18.02,一區)

[3]. D. Miao, N. Cheng, 王先鋒*, J. Yu*, and B. Ding*, Integration of Janus Wettability and Heat Conduction in Hierarchically Designed Textiles for All-Day Personal Radiative Cooling, Nano Letters, 2022, 22, 680–687. (IF 12.26,一區)

[4].D. Miao, 王先鋒*, J. Yu, and B. Ding*, A Biomimetic Transpiration Textile for Highly Efficient Personal Drying and Cooling, Advanced Functional Materials, 2021, 31, 2008705. (IF 19.92,一區)

[5]. Y. Zhang, N. Meng, A. Babar, 王先鋒*, J. Yu, and B. Ding*, Multi-bioinspired and Multistructural Integrated Patterned Nanofibrous Surface for Spontaneous and Efficient Fog Collection, Nano Letters, 2021, 21, 7806–7814. (IF 12.26,一區)

[6]. J. Zhao, W. Zhu, 王先鋒*, L. Liu, J. Yu, and B. Ding*, Fluorine-Free Waterborne Coating for Environmentally Friendly, Robustly Water-Resistant, and Highly Breathable Fibrous Textiles, ACS Nano, 2020, 14 (1), 1045-1054. (IF 18.02,一區)

[7]. 王先鋒, Z. Huang, D. Miao, J. Zhao, J. Yu, and B. Ding*, Biomimetic Fibrous Murray Membranes with Ultrafast Water Transport and Evaporation for Smart Moisture-Wicking Fabrics, ACS Nano, 2019, 13 (40), 34802–34810. (IF 18.02,一區)

[8]. C. Wang, J. Zhao, L. Liu, P. Zhang, 王先鋒*, J. Yu, and B. Ding*, Transformation of Fibrous Membranes from Opaque to Transparent under Mechanical Pressing, Engineering, 2022, Doi:10.1016/j.eng.2021.02.018 (IF 12.83,中國科技期刊卓越行動計劃-領軍期刊).

[9]. D. Miao, Z. Huang, 王先鋒*, J. Yu, and B. Ding, Continuous, Spontaneous, and Directional Water Transport in the Trilayered Fibrous Membranes for Functional Moisture Wicking Textiles, Small, 2018, 14, 1801527. (IF 15.15,一區)

[10].D. Miao, 王先鋒*, J. Yu, and B. Ding*, Nanoengineered Textiles for Outdoor Personal Cooling and Drying, Advanced Functional Materials, 2022, 2209029. (IF 19.92,一區)

專利專著

主編/參編書籍:

[1].B. Ding, 王先鋒, J. Yu, “Electrospinning: Nanofabrication and Applications”, Netherlands, Elsevier B.V., 2019, ISBN: 978-0-323-51270-1. (主編書籍)

[2].王先鋒and B. Li, “Phase-change solvents for CO2 capture”, In: Editor Fan Shi and Bryan Morreale, “Novel Materials for Carbon Dioxide Mitigation Technology”, Netherlands, Elsevier B.V., 2015, pp 3-22.

[3].王先鋒and B. Li, “Electrospun nanofibrous sorbents and membranes for carbon dioxide capture”, In: Editor Bin Ding and Jianyong Yu, “Electrospun Nanofibers for Energy and Environmental Applications”, Germany, Springer Publishers, Inc., 2014, pp 249-263.

[4].王先鋒, Y. Duan and B. Li, “Development and evaluation of fibrous adsorbents for carbon dioxide removal”, In: Editor Andrew Wright and Shawn Johnson, “Atmosphere and Climate: Physics, Composition/Dynamics and Health Impacts”, America, Nova Science Publishers, Inc., 2012, pp 83-98.

[5].王先鋒, B. Ding, J. Yu and G. Sun, “Applications of nanofibers in sensors”, In: Editor Qufu Wei, “Functional Nanofibers and Applications”, Cambridge, Woodhead Publishing Inc., 2012, pp 209-235.

[6].王先鋒, B. Ding, J. Yu and G. Sun, “Surface modified electrospun nanofibrous membranes for humidity detection based on quartz crystal microbalance technique”, In: Editor Christopher T. Okada, “Humidity Sensors: Types, Nanomaterials and Environmental Monitoring”, America, Nova Science Publishers, Inc., 2011, pp 144-160.

[7]. 參編《靜電紡絲與納米纖維》,中國紡織出版社出版,ISBN 978-7-5064-7267-8(獲中國紡織工業聯合會優秀圖書獎)

[8]. 參編《非織造實驗教程》,402永利出版社,ISBN 978-7-5669-1118-6


代表性發明專利:

1.王先鋒、王超、丁彬、俞建勇,一種透明納米纖維膜及其制備和在透明口罩上的應用,專利号ZL202111360739.X(授權)

2.王先鋒、缪東洋、丁彬、俞建勇,具有水分單向傳導能力的微纖維複合膜及其制備方法,專利号ZL201710094417.2(授權)

3.王先鋒、缪東洋、張昕輝、丁彬、俞建勇,具有潤濕梯度的單向導濕纖維多層複合膜的制備方法,專利号ZL201710435876.2(授權)

4.王先鋒、缪東洋、丁彬、俞建勇,一種維持傷口适度濕潤的定向導液敷料及其制備方法,專利号ZL201910429368.2(授權)

5.丁彬、王先鋒、張宇菲、林燕燕、俞建勇,一種醫衛防護用潤濕梯度類蜂巢結構纖維膜及其制備方法,專利号ZL202010446711.7(授權)

6.王先鋒、張宇菲、丁彬、俞建勇,一種高比表面積類蜂巢結構納米纖維材料及其制備方法,專利号ZL202010446712.1(授權)

7.王先鋒,王超,丁彬,王學利,俞建勇,一種高強粗旦聚丙烯紡粘長絲及其制備方法,專利号ZL201810694331.8(授權)

8.王先鋒,張宇菲,丁彬,俞建勇,氨基化碳管摻雜的碳纖維吸附材料及其制備方法,專利号ZL201610664022.7(授權)

9.王先鋒、丁彬、窦綠葉、俞建勇,一種二氧化碳吸附用胺基改性纖維材料的制備方法,專利号ZL201610663895.6(授權)

10.王先鋒、窦綠葉、丁彬、俞建勇,用于二氧化碳吸附的聚離子液體纖維材料及其制備方法,專利号ZL201610664105.6(授權)


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