陈国印
发布人: 星禧   发布时间: 2024-09-10    浏览次数:

陈国印

博士,副研究员,硕士生导师

国家博新计划、上海市晨光计划、上海市扬帆计划获得者

朱美芳院士团队

邮箱:chengy@dhu.edu.cn

地址: 东华大学松江校区复材大楼a612

基本情况

长期从事纳米复合水凝胶及其多级结构纤维的成型研究。在水凝胶纤维材料的设计、制备、功能改性及其生物医用领域积累了扎实的研究基础。通过组分调控、结构设计、新方法的建立,制备了系列具有优异生物相容性的水凝胶纤维,开发了系列具有光导、电导和湿份可调的水凝胶纤维及其聚集体材料,并实现了其在光信号传输传感和生物医学诊疗领域的应用可行性。以第一作者/通讯作者身份在Chem RevNat CommunAdv MaterNatl Sci RevNano Today、等国际期刊发表SCI论文二十余篇;申请国家发明专利十五项,其中授权专利10项,获中国材料研究学会科学技术奖等荣誉。

学习与工作经历

20242月至今,东华大学材料学院,副研究员 (朱美芳教授团队)

20221—20241月,东华大学材料学院,博士后(合作导师:朱美芳教授)

20169—20221月,东华大学,纳米纤维及杂化材料,博士研究生(导师:Benjamin S. Hsiao 教授,朱美芳教授)

20129—20166月,浙江理工大学,材料科学与工程学院,本科 (导师:余厚咏教授)

研究方向

1.      水凝胶纤维方式成形及其医用

2.      水凝胶微针3D打印成型及其应用

3.      高稳定生物界面构建

承担项目

1.      国家自然科学基金青年项目, 主持, 在研;

2.      十五五工程科学与综合交叉国家重点专项子任务,主持, 在研;

3.      企业横向项目, 主持, 在研;

4.      2024年度上海市教委晨光计划, 主持, 在研;

5.      2023年度上海市 “科技创新行动计划启明星项目 (扬帆专项), 主持, 在研;

6.      2022年度博士后创新人才支持计划, 主持 (已结题) ;

7.      2022年度上海市 “超级博士后激励计划, 主持 (已结题)

论文情况(按发表时间顺序)

1.张泽祺, 周涛, 周文琪, 范中尧, 杨佳蕾, 陈国印*, 潘绍武, 朱美芳. 生理电信号监测用导电纤维及其研究进展. 纺织学报, 2025, 46(5), 65-71.  (ZHANG Zeqi, ZHOU Tao, ZHOU Wenqi, FAN Zhongyao, YANG Jialei, CHEN Guoyin*, PAN Shaowu. ZHU Meifang. Conductive fibers for electrophysiological signal monitoring and their research progress. 2025, 46(5), 65-71) 

2. Ying Guo, Yifan Liu, Zeqi Zhang, Xiaozhe Zhang, Xu Jin, Ruxu Zhang, Guoyin Chen*, Liping Zhu*, Meifang Zhu*.Biopolymer-based Fibrous Aggregate Materials for Diagnosis and Treatment: Design, Manufacturing, and Applications. Advanced Materials, 2025, 37(22), 2414877.

3.Guoyin Chen, Zhaowei Yang, Hongyu Pan, Jian Zhang, Ying Guo, Ziying Zhou, Jiahao Zheng, Zeqi Zhang, Ran Cao, Kai Hou, Meifang Zhu. A Review of Hydrogel Fiber: Design, Synthesis, Applications and Futures. Chemical Review, 2025, 125(13), 5991-6056. 封面论文

4.Salma Ali, Ibrahim Abdalla, Guoyin Chen*, Hengxue Xiang*, Meifang Zhu*. Non-invasive wearable nanoporous device for real-time monitoring of glucose in sweat. Composite Part B, 2025, 303, 112613.

5.Jiahao Zheng, Zhihao Wang, Guoyin Chen*, Kai Hou*, Meifang Zhu. Self-healing Hydrogel Optical Fibers with Programmable Functions for Multi-Signal Sensing and Decoupling. Science China Materials, 2025, Just accepted.

6.Jiahao Zheng, Yue Yan, Yifan, Zeqi Zhang, Shijia Tang*, Kai Hou*, Guoyin Chen*, Feimin Zhang, Meifang Zhu. A degradation resistant hydrogel optical fiber with excellent photoconductive property. Acta Biomaterilia, 2025, 205, 372-381.

7.杨佳蕾,周文琪,潘绍武*, 侯恺*,陈国印*,朱美芳,弹性体光纤传感器。Chinese Science Bulletin Chinses, 2025, Just accepted.

8. Yifan Liu#, Guoyin Chen#, Tianyu Zhou, Xiaohui Mao, Junfen Sun, Liping Zhu,* Long Chen, and Meifang Zhu. Chitosan-Based Thermal-Coagulation Hydrogel System Driven by Multiple Interactions: Oxidation-Induced Fast Gelation and Enhanced Performance. Biomacromolecules, 2025, 26 (6), 3732-3744. 

9.Guoyin Chen#, Siming Xu#, Zeqi Zhang#, Ying Guo, Jiahao Zheng, Jialei Yang, Jie Pan*, Kai Hou*, Meifang Zhu* Modulus self-adaptive hydrogel optical fiber for long-term modulation of neural activity. Chinese Chemical Letters, 2024, 110440.

10.Yaqi Geng#, Guoyin Chen#, Ran Cao*, Hongmei Dai, Zexu Hu, Senlong Yu, Le Wang, Hengxue Xiang*, Meifang Zhu*. A skin-inspired self-adaptive system for temperature control during dynamic wound healing. Nano-Micro Letters, 2024, 16 (1), 152.

11.Geng Y.Q.,#Chen G.Y.,# Cao R.,* Dai H.M., Hu Z.X., Yu S.L., Wang L., Xiang H.X.,* Meifang Zhu*. A skin-inspired self-adaptive system for temperature control during dynamic wound healing. Nano-Micro Letters, 2024, 16(1), 152.

12. Guo Y., Zheng J.H., Chen G.Y.,* Hou K.,* Zhu M.F. Biocompatible optical fiber for photomedical application. Giant, 2023,16, 100195.

13. Chen G.Y.#, Yang L.J. #, Ma N.#, Yu S.L., Zhou J.L., Cao R., Zhang Q., Yu H.L., Zhai M., Wang R.X., Dai H.M., Hu Z.X.,* Hou K., Zhou Z., Sun B., Xiang H.X.,* Zhu M.F.*. Selection and design principle of efficient antiviral nano-hybrid fiber materials for fighting pandemic viruses: a review.  Nano Today, 2023, 53, 102001.

14. Chen G.Y. #, Xu S.M. #, Zhou Q.Q., Zhang Y.J., Song Y.H., Mi J., Liu Y.H., Hou K.*, Pan J.* Temperature-gated light-guiding hydrogel fiber for thermoregulation during optogenetic neuromodulation. Advanced Fiber Materials, 2023, 5, 968–978.

15. Chen G.Y., Hou K., Yu N., Wei P.L., Chen T., Zhang C.H., Wang S., Liu H.M., Cao R., Zhu L.P., Hsiao S.B., Zhu M.F. Temperature-adaptive hydrogel optical waveguide with soft tissue-affinity for thermal regulated interventional photomedicine. Nature Communication, 2022, 13: 7789.

16. Chen G.Y. #, Guo Y. #, Hisao B.S., Hou K.*, Zhu M.F. Tough, conductive hydrogels with double-network based on hydrophilic polymer assistant well-dispersed carbon nanotube for innovative force sensor. Science China Technological Science, 2022, 65, 1160-1168.

17. Chen G.Y., Wang W.M., Lu X., Mugaanire I.T., Zhang Y., Ai Y.L., Hou K.*, Hsiao B.S., Zhu M.F. Homogeneous intercalated graphene/manganic oxide hybrid fiber electrode assembly by non-liquid-crystal spinning for wearable energy storage. Journal of Materials Science and Technology, 2022, 97: 1-9.

18. Chen G.Y. #, Wang G. #, Tan X.R., Hou K., Meng Q.S., Zhao P., Wang S., Zhang J.Y., Zhou Z., Chen T., Cheng Y.H., Hsiao B.S., Reichmanis E., Zhu M.F*. Integrated dynamic wet spinning of core-sheath hydrogel fibers for optical-to-brain/tissue communications. National Science Review, 2021, 8: nwaa209.

19. Chen G.Y., Ai Y.L., Mugaanirea I.T., Ma W.J., Hsiao B.S., Hou K.*, Zhu M.F. A simple inorganic hybrids strategy for graphene fibers fabrication with excellent electrochemical performance. Journal of power sources, 2020, 450: 227637.

20. Chen G.Y., Chen T., Hou K., et al. Robust, hydrophilic graphene/cellulose nanocrystal fiber-based electrode with high capacitive performance and conductivity. Carbon, 2018, 127: 218-227.

21. Chen G.Y., Yu H.Y.*, Zhang C.H., Zhou Y., Yao J.M. A universal route for the simultaneous extraction and functionalization of cellulose nanocrystals from industrial and agricultural celluloses. Journal of Nanoparticle Research, 2016, 18(2):1-14.

专利情况

1.      陈国印,潘弘宇,张泽褀,杨兆伟,张健,侯恺,朱美芳。一种基于三芯纺丝技术的生物兼容型凝胶探针及其制备方法,专利号:CN202511128999.2

2.      朱美芳,张健,陈国印,杨兆伟,潘宏宇,侯恺。一种双层janus结构的自黏附载药水凝胶医用条带及其制备方法,专利号: CN202510639706.0

3.      朱美芳,郑佳豪,陈国印,王智豪,侯恺,郭莹,张泽祺,杨佳蕾。一种用于解耦多重生理信号的可编程自组装水凝胶光纤及其制备方法和用途,专利号:CN202410897995.X

4.      朱美芳,陈国印,侯恺,成艳华,艾玉露,危培玲,姜耘蒙。一种基于反应性纺丝的水凝胶光导纤维的连续制备方法,专利号:ZL 2019 1 0886382.5

5.      朱美芳,陈国印,艾玉露,侯恺,成艳华,危培玲,聂远凌。一种水凝胶基光纤温度传感器及其制备方法专利号:ZL 2019 1 0886828.4

6.      朱美芳,陈国印,侯恺,成艳华,陈涛,周展,聂远凌。一种基于水凝胶光纤力学传感器及其制备方法专利号:ZL201910886383.X

7.      朱美芳,陈涛,危培玲,陈国印,侯恺。一种高导光、高保湿纳米复合水凝胶纤维及其制备方法。专利号:ZL201911071226.X

8.      朱美芳,陈涛,危培玲,陈国印,侯恺。一种抗冻、自修复导电纳米复合水凝胶光纤及其制备方法。专利号:ZL201911071879.8

9.      朱美芳,陈涛,危培玲,陈国印,侯恺。一种快速响应性纳米复合水凝胶纤维驱动器及其制备方法。专利号:ZL201911071228.9

10.  朱美芳,陈涛,危培玲,陈国印,侯恺。一种连续化制备高强度水凝胶纤维的方法。专利号:ZL201911071224.0

获奖情况

1.        2025年中国化纤协会科技进步一等奖(13/15

2.        2023中国材料研究学会科学技术奖-博士生创新奖(第一届,全国共9人)

3.        2022中国化学纤维工业协会·恒逸基金优秀学术论文二等奖

4.        上海市优秀毕业生

5.        2020中国化学纤维工业协会·恒逸基金优秀学术论文二等奖

6.        2021年第四届梅特勒-托利多 “学泰杯论文大赛三等奖

7.        东华大学2023年度优秀博士学位论文

学生培养

入职以来,指导学生多人次获得国家奖学金、东华大学优秀学生、校级奖学金、上海市级及校级科创项目等荣誉。

招生情况

每年招收研究生、本科生、科研助理若干名,欢迎具有高分子材料、无机材料、化学、纺织等学科背景的本科生、研究生一起创造未来!