
姓名:王陈
职称:讲师
邮箱:chenwang_97@163.com
个人基本情况
王陈(Wang Chen),中共党员,1997年生,湖南常德人,工学博士。研究领域为生物医用粘合剂、3D打印与组织工程等。参与多项国家级或省级课题,在《Advanced Healthcare Materials》、《International Journal of Biological Macromolecules》、《Materials Chemistry Frontiers》等国内外期刊发表10篇SCI论文,授权国家发明专利3项。
主要研究方向
(1)生物医用粘合剂
(2)生物增材制造
开设课程
机械工程英语
近年的科研项目、专著与论文、专利、获奖
主持科研项目:
1、湿粘止血水凝胶伤口敷料的关键技术研究,海南省重点研发计划项目,2025.01-2026.12,参与;
2、用于促进糖尿病伤口愈合和实时监测的自愈性季铵壳聚糖/氧化海藻酸钠智能水凝胶及其性能研究,海南省科技计划自然科学基金联合项目,2022.06-2024.06,已结题,参与;
3、磁性纳米复合人工骨的激光增材制备及成骨机理研究,国家自然科学基金,2019.01-2021.12,已结题,参与;
申请/授权发明专利:
一种改性的MXene/PHBV复合骨支架及其制备方法,202011083749.9
一种自愈合pH敏感水凝胶及其制备方法与应用,202411646932.3
一种仿贻贝聚硫辛酸基水凝胶粘合剂及制备方法和应用,202411348069.3
代表性著作:
[1] Wang Chen, Yu Fangzheng, Yuan Yang, Zhang Zhiyuan, Yang Zhifei, Wang Xinyu, Zhao Zheng*. Nanozyme‐crosslinked poly(thioctic acid)‐based hydrogel adhesives with coral‐like structure for promoting wet adhesion, antibacterial active, and wound healing. Advanced Healthcare Materials, 15(1): e01866, 2026.
[2] Wang Chen, Yu Fangzheng, Yuan Yang, Zhao Zheng*, Zhang Lingling*. Biomimetic poly (thioctic acid)-based bioadhesive hydrogels for wet adhesion, expeditious hemostasis and enhanced wound healing. International Journal of Biological Macromolecules, 283: 137108, 2024.
[3] Chen Yun, Wang Chen, Zhang Zhiyuan, Yu Fangzheng, Wang Yu, Ding Jianqiang, Zhao Zheng*, Liu Yingchao*. 3D-printed piezocatalytic hydrogels for effective antibacterial treatment of infected wounds. International Journal of Biological Macromolecules, 268: 131637, 2024.
[4] Yang Zhifei, Wang Chen, Zhang Zhiyuan, Yu Fangzheng, Wang Yu, Ding Jianqiang, Zhao Zheng*, Liu Yingchao*. A pH responsive tannic acid/quaternized carboxymethyl chitosan/oxidized sodium alginate hydrogels for accelerated diabetic wound healing and real-time monitoring. International Journal of Biological Macromolecules, 264: 130741, 2024
[5] Qi Fangwei, Wang Chen, Peng Shuping*, Shuai Cijun*, Yang Wenjing, Zhao Zhenyu. A co-dispersed nanosystem of strontium-anchored reduced graphene oxide to enhance the bioactivity and mechanical property of polymer scaffolds. Materials Chemistry Frontiers, 5(5): 2373-2386, 2021.
[6] Shuai Cijun*, Wang Chen, Qi Fangwei, Peng Shuping*, Yang Wenjing, He Chongxian, Wang Guoyong, Qian Guowen. Enhanced crystallinity and antibacterial of PHBV scaffolds incorporated with zinc oxide. Journal of Nanomaterials, 2020(1): 6014816, 2020.
[7] Yu Fangzheng, Wang Chen, Zhang Jiawei, Zhao Zheng*. Quaternary ammonium salt carboxymethyl chitosan/sodium oxidized alginate/tannic acid/sodium tetraborate hydrogel dressings with self-healing, antioxidant and responsive release of tannic acid[J]. Materials, 19(4): 749, 2026.
[8] Yuan Yang, Zhang Jiawei, Yu Fangzheng, Wang Chen, He Jiale, Zhao Zheng*. Multifunctional poly(thioctic acid) composite hydrogels with self-healing, antibacterial, antioxidant, and adhesive properties. Materials, 19(13): 2695, 2026.
[9] Yang Zhifei, Wang Chen, Zhang Jiawei, Zhang Zhiyuan, Yu Fangzheng, Yuan Yang, Zhao Zheng*. A multifunctional sodium alginate oxide-based hydrogel with antibacterial and anti-inflammation properties for smart monitoring and accelerated diabetic wound healing. International Journal of Biological Macromolecules, 147846, 2025.
[10] Yang Zhifei, Zhang Jiaxu, Wang Chen, Yu Fangzheng, Wen Yu, Zhao Zheng*. A glucose responsive multifunctional hydrogel with antibacterial properties and real-time monitoring for diabetic wound treatment. Biomaterials Science, 13(1): 275-286, 2024.
(责编/王荣荣 初审/李罗娜 终审/周勇)