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紡織學院

季東曉研究員


季東曉,198710月生。主要從事靜電紡絲技術(shù)及其在氣體擴散電極儲能和智能紡織品中的應(yīng)用,發(fā)展了靜電紡氣體擴散電極功能一體化制備方法,揭示了纖維纖網(wǎng)微結(jié)構(gòu)與電化學性能的構(gòu)效關(guān)系,研制了微納米纖網(wǎng)結(jié)構(gòu)精準調(diào)控裝備,實現(xiàn)了高性能紡織氣體擴散電極和紡織智能響應(yīng)系統(tǒng)。近五年在Adv. Mater、Matter、Angew. Chem.、Sci. China Mater.等國際權(quán)威期刊發(fā)表學術(shù)論文48篇,文章引用超3300次,授權(quán)微納纖維精細制造相關(guān)專利4項,主持“十四五”國家重點研發(fā)計劃課題、國家自然科學青年基金、上海市自然科學面上基金等科研項目7項,入選2021年度 “上海市浦江人才計劃”和2022年度“上海市高層次人才計劃”,獲中國紡織工業(yè)聯(lián)合會科技進步一等獎。



研究方向

1、 靜電紡絲及其后處理

2、 智能紡織品

3、 燃料電池、空氣電池


榮譽及獲獎情況:

1、 上海市海外高層次人才計劃

2、 上海市浦江人才計劃A類

3、 中國紡織工業(yè)聯(lián)合會科技進步一等獎


近年來承擔的主要科研項目:

1、 “十四五”國家重點研發(fā)計劃課題

2、 國家自然科學青年基金

3、 上海市浦江人才項目

4、 上海市自然科學面上基金

5、 東華大學特聘研究員人才項目


近年來發(fā)表的代表性論著、專利:

論文

1. X. Li, H. Xu, Y. Yang, F. Li, S. Ramakrishna, J. Yu, D. Ji, X. Qin. Selective spectral absorption of nanofibers for color-preserving daytime radiative cooling [J]. Materials Horizons, 2023.

2. F. Li, Y. Li, K. S. Novoselov, F. Liang, J. Meng, S. H. Ho, T. Zhao, H. Zhou, A. Ahmad, Y. Zhu, L. Hu, D. Ji, L. Jia, R. Liu, S. Ramakrishna, X. Zhang. Bioresource Upgrade for Sustainable Energy, Environment, and Biomedicine [J]. Nanomicro Letters, 2023, 15: 35.

3. Y. Yang, X. Li, J. Mi, S. Ramakrishna, D. Ji, J. Yu, R. Wang, X. Qin. Coordinating chain crystallinity and orientation by tailoring electrical stretching for fabrication of super-tough and strong organic fibers [J]. Chemical Engineering Journal, 2022, 442: 136203.

4. K. Wang, W. Ding, Q. Luo, D. Ji, L. Wang, R. Wang, X. Qin. Cleaner Dyeing Technology for Denim Fabrics with Excellent Utilization of Indigo Based on Inert Gas Protection [J]. ACS Sustainable Chemistry & Engineering, 2022, 10(48): 16009-16018.

5. J. Sun, Q. Sun, H. Ye, Y. Wang, J. A. S. Oh, D. Ji, Q. Zeng, K. Zeng, L. Lu. Ammonium escorted chloride chemistry in stabilizing aqueous chloride ion battery [J]. Materials Today Energy, 2022, 26: 101020.

6. X. Li, Y. Yang, Z. Quan, L. Wang, D. Ji, F. Li, X. Qin, J. Yu, S. Ramakrishna. Tailoring body surface infrared radiation behavior through colored nanofibers for efficient passive radiative heating textiles [J]. Chemical Engineering Journal, 2022, 430: 133093.

7. S. Jia, D. Ji, L. Wang, X. Qin, S. Ramakrishna. Metal–Organic Framework Membranes: Advances, Fabrication, and Applications [J]. Small Structures, 2022, 3(4): 2100222.

8. Z. Sun, X. Wen, L. Wang, D. Ji, X. Qin, J. Yu, S. Ramakrishna. Emerging design principles, materials, and applications for moisture-enabled electric generation [J]. eScience, 2022, 2(1): 32-46.

9. D. Ji, X. Guo, W. Fu, Z. Ding, C. Wang, Q. Zhang, S. Ramakrishna, X. Qin. The marriage of biochemistry and nanotechnology for non-invasive real-time health monitoring [J]. Materials Science and Engineering: R: Reports, 2022, 149: 100681.

10. L. Fan, H. Shen, D. Ji, Y. Xing, L. Tao, Q. Sun, S. Guo. Biaxially Compressive Strain in Ni/Ru Core/Shell Nanoplates Boosts Li-CO2 Batteries [J]. Advanced Materials, 2022, 34(30): e2204134.

11. Z. Zhang, D. Ji, H. He, S. Ramakrishna. Electrospun ultrafine fibers for advanced face masks [J]. Mater Sci Eng R Rep, 2021, 143: 100594.

12. R. Liu, D. Ji, G. Zhou, Z. Liu, Q. Xu, S. Ramakrishna. Electrospun nanofibers for personal protection in mines [J]. Chemical Engineering Journal, 2021, 404: 126558.

13. X. Li, D. Ji, B. Yu, R. Ghosh, J. He, X. Qin, S. Ramakrishna. Boosting piezoelectric and triboelectric effects of PVDF nanofiber through carbon-coated piezoelectric nanoparticles for highly sensitive wearable sensors [J]. Chemical Engineering Journal, 2021, 426: 130345.

14. K. Liu, M. Tebyetekerwa, D. Ji, S. Ramakrishna. Intelligent Materials [J]. Matter, 2020, 3(3): 590-593.

15. Z. Zhang, H. He, W. Fu, D. Ji, S. Ramakrishna. Electro-Hydrodynamic Direct-Writing Technology toward Patterned Ultra-Thin Fibers: Advances, Materials and Applications [J]. Nano Today, 2020, 35: 100942.

16. L. Tian, D. Ji, S. Zhang, X. He, S. Ramakrishna, Q. Zhang. A Humidity-Induced Nontemplating Route toward Hierarchical Porous Carbon Fiber Hybrid for Efficient Bifunctional Oxygen Catalysis [J]. Small, 2020, 16(23): e2001743.

17. D. Safanama, D. Ji, K. C. Phuah, S. Ramakrishna, S. Adams. Round-Trip Efficiency Enhancement of Hybrid Li-Air Battery Enables Efficient Power Generation from Low-Grade Waste Heat [J]. ACS Sustainable Chemistry & Engineering, 2020, 8(50): 18500-18505.

18. D. Ji, J. Sun, L. Tian, A. Chinnappan, T. Zhang, W. A. D. M. Jayathilaka, R. Gosh, C. Baskar, Q. Zhang, S. Ramakrishna. Engineering of the Heterointerface of Porous Carbon Nanofiber–Supported Nickel and Manganese Oxide Nanoparticle for Highly Efficient Bifunctional Oxygen Catalysis [J]. Advanced Functional Materials, 2020, 30(13): 1910568.

19. D. Ji, L. Fan, X. Li, S. Ramakrishna. Addressing the worldwide shortages of face masks [J]. BMC Mater, 2020, 2(1): 9.

20. R. Ghosh, K. Y. Pin, V. S. Reddy, W. A. D. M. Jayathilaka, D. Ji, W. Serrano-García, S. K. Bhargava, S. Ramakrishna, A. Chinnappan. Micro/nanofiber-based noninvasive devices for health monitoring diagnosis and rehabilitation [J]. Applied Physics Reviews, 2020, 7(4): 041309.

21. G. Yang, P. R. Ilango, S. Wang, M. S. Nasir, L. Li, D. Ji, Y. Hu, S. Ramakrishna, W. Yan, S. Peng. Carbon-Based Alloy-Type Composite Anode Materials toward Sodium-Ion Batteries [J]. Small, 2019, 15(22): e1900628.

22. D. Ji, L. Fan, L. Tao, Y. Sun, M. Li, G. Yang, T. Q. Tran, S. Ramakrishna, S. Guo. The Kirkendall Effect for Engineering Oxygen Vacancy of Hollow Co3O4 Nanoparticles toward High-Performance Portable Zinc-Air Batteries [J]. Angew Chem Int Ed Engl, 2019, 58(39): 13840-13844.

23. D. Ji, L. Fan, L. Li, S. Peng, D. Yu, J. Song, S. Ramakrishna, S. Guo. Atomically Transition Metals on Self-Supported Porous Carbon Flake Arrays as Binder-Free Air Cathode for Wearable Zinc-Air Batteries [J]. Adv Mater, 2019, 31(16): e1808267.

24. D. Ji, L. Fan, L. Li, N. Mao, X. Qin, S. Peng, S. Ramakrishna. Hierarchical catalytic electrodes of cobalt-embedded carbon nanotube/carbon flakes arrays for flexible solid-state zinc-air batteries [J]. Carbon, 2019, 142: 379-387.

25. G. Yang, L. Wang, Y. Zhao, S. Peng, J. Wang, D. Ji, Z. Wang, W. Yan, S. Ramakrishna. One-dimensional MgxTiyOx+2y nanostructures: General synthesis and enhanced photocatalytic performance [J]. Applied Catalysis B: Environmental, 2018, 225: 332-339.

26. S. Peng, X. Han, L. Li, S. Chou, D. Ji, H. Huang, Y. Du, J. Liu, S. Ramakrishna. Electronic and Defective Engineering of Electrospun CaMnO3 Nanotubes for Enhanced Oxygen Electrocatalysis in Rechargeable Zinc-Air Batteries [J]. Advanced Energy Materials, 2018, 8(22): 1800612.

27. S. Peng, F. Gong, L. Li, D. Yu, D. Ji, T. Zhang, Z. Hu, Z. Zhang, S. Chou, Y. Du, S. Ramakrishna. Necklace-like Multishelled Hollow Spinel Oxides with Oxygen Vacancies for Efficient Water Electrolysis [J]. J Am Chem Soc, 2018, 140(42): 13644-13653.

28. G. Yang, L. Wang, S. Peng, J. Wang, D. Ji, W. Yan, S. Ramakrishna. In Situ Fabrication of Hierarchically Branched TiO2 Nanostructures: Enhanced Performance in Photocatalytic H2 Evolution and Li-Ion Batteries [J]. Small, 2017, 13(47): 1702357.

29. Z. Wang, S. Peng, Y. Hu, L. Li, T. Yan, G. Yang, D. Ji, M. Srinivasan, Z. Pan, S. Ramakrishna. Cobalt nanoparticles encapsulated in carbon nanotube-grafted nitrogen and sulfur co-doped multichannel carbon fibers as efficient bifunctional oxygen electrocatalysts [J]. Journal of Materials Chemistry A, 2017, 5(10): 4949-4961.

30. S. Peng, L. Li, J. Zhang, T. L. Tan, T. Zhang, D. Ji, X. Han, F. Cheng, S. Ramakrishna. Engineering Co9S8/WS2 array films as bifunctional electrocatalysts for efficient water splitting [J]. Journal of Materials Chemistry A, 2017, 5(44): 23361-23368.

31. L. Li, S. Peng, J. K. Y. Lee, D. Ji, M. Srinivasan, S. Ramakrishna. Electrospun hollow nanofibers for advanced secondary batteries [J]. Nano Energy, 2017, 39: 111-139.

32. D. Ji, S. Peng, D. Safanama, H. Yu, L. Li, G. Yang, X. Qin, M. Srinivasan, S. Adams, S. Ramakrishna. Design of 3-Dimensional Hierarchical Architectures of Carbon and Highly Active Transition Metals (Fe, Co, Ni) as Bifunctional Oxygen Catalysts for Hybrid Lithium–Air Batteries [J]. Chemistry of Materials, 2017, 29(4): 1665-1675.

33. D. Ji, S. Peng, J. Lu, L. Li, S. Yang, G. Yang, X. Qin, M. Srinivasan, S. Ramakrishna. Design and synthesis of porous channel-rich carbon nanofibers for self-standing oxygen reduction reaction and hydrogen evolution reaction bifunctional catalysts in alkaline medium [J]. Journal of Materials Chemistry A, 2017, 5(16): 7507-7515.

34. D. Ji, S. Peng, L. Fan, L. Li, X. Qin, S. Ramakrishna. Thin MoS2 nanosheets grafted MOFs-derived porous Co–N–C flakes grown on electrospun carbon nanofibers as self-supported bifunctional catalysts for overall water splitting [J]. Journal of Materials Chemistry A, 2017, 5(45): 23898-23908.

專利 

1. 張紅霞,陳正凱,季東曉,覃小紅,王榮武,張艷紅,俞建勇. 一種原位內(nèi)嵌依蘭芳香紗及其制備方法[P]. 上海市:CN115748042A,2023-03-07.

2. 王榮武,汪康康,季東曉,權(quán)震震,張弘楠,劉力,王黎明,覃小紅,俞建勇. 一種纖維素基紡織品活性氧梯度原纖空隙預氧化前處理方法[P]. 上海市:CN113322694B,2022-11-04.

3. 季東曉,段毅琨,于銀軍,陳森,何曉玲,徐惠棟,劉倩麗,覃小紅,俞建勇,唐文君,于擁軍,向中林. 一種襯衫用原位聚合抗菌色織紗及其制備方法[P]. 江蘇省:CN115233347A,2022-10-25.

4. 王黎明,李瑛慧,季東曉,張紅霞,張艷紅,王曉蕓,覃小紅,俞建勇. 一種制備微納米纖維復合紗線的裝置及方法[P]. 上海市:CN115198399A,2022-10-18.

5. 覃小紅,周智勇,季東曉,李欣欣,權(quán)震震. 一種濺落式多針頭靜電紡絲裝置及其使用方法[P]. 上海市:CN115074841A,2022-09-20.

6. 王榮武,王運,權(quán)震震,劉力,季東曉,覃小紅,俞建勇. 一種具有調(diào)溫功能花灰紗及其制備方法[P]. 上海市:CN114277475A,2022-04-05.

7. 季東曉,陳文靜,張弘楠,王榮武,覃小紅. 一種抗病毒微納米纖維的制備方法[P]. 上海市:CN113774506A,2021-12-10.

8. 覃小紅,韓華,王榮武,付友善,季東曉,張弘楠. 一種應(yīng)用于梳棉機的吸風網(wǎng)簾裝置及其工作方法[P]. 上海市:CN107177908B,2019-07-23.

9. 覃小紅,季東曉,于昊楠,倪安琪,夏遠東. 一種控制規(guī)模化靜電紡絲環(huán)境溫濕度的裝置[P]. 上海市:CN105588203B,2018-05-15.

10. 覃小紅,季東曉,楊雨瓊,于昊楠. 一種規(guī)模化靜電紡絲的紡絲機構(gòu)位移裝置[P]. 上海市:CN105316779B,2018-02-23.

11. 覃小紅,季東曉,夏遠東. 一種控制規(guī)模化靜電紡絲環(huán)境溫濕度的裝置[P]. 上海:CN105588203A,2016-05-18.

12. 季東曉,伏廣偉,謝凡,楊萍,賀志鵬,王玲. 一種紡織品無損檢測甲醛含量測試裝置[P]. 北京:CN203587590U,2014-05-07.

13. 覃小紅,王衍書,季東曉,曹建華,張杰. 一種采用靜電紡醋酸纖維膜的香煙過濾嘴的制備方法[P]. 上海:CN102423141A,2012-04-25.



主要學術(shù)兼職:

1、 eScience青年編委、Advanced Materials Science & Technology 編委

2、 Nanomaterials、Biosensors專刊主編

3、 Encyclopedia of Green Materials,自然出版社,紡織材料section編委


國際交流與合作:

新加坡國立大學

 

E-MAILjidongxiao@dhu.edu.cn

 


 

  


關(guān)于東華大學

東華大學是教育部直屬、國家“211工程”、國家“雙一流”建設(shè)高校。學校秉承“崇德博學、礪志尚實”的校訓,不斷開拓奮進,
已發(fā)展成為以紡織、材料、設(shè)計為優(yōu)勢,特色鮮明的多科性、高水平大學。

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