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徐超,武汉纺织大学 材料科学与工程学院 校聘副教授,硕士生导师,湖北省“楚天学子”。华中科技大学博士、博士后,长期从事生物材料与组织工程领域的研究。主要从事电活性生物医用纺织材料、无线化电刺激技术的研究,针对多数电活性材料难以降解以及生物相容性差的问题,致力于研究新型可降解电活性材料,构建可降解电活性组织工程支架,探究电学微环境在神经、骨组织工程领域中的应用研究。在Advanced Materials; AdvancedFunctional Materials; ACS Nano; Nano Energy; Chemical Engineering Journal;Bioactive Materials; Advanced Healthcare Materials等国际知名SCI期刊发表论文20余篇,获发明专利授权4项,主持国家自然科学基金青年基金1项,中国博士后基金2项,湖北省科技创新计划项目1项,企业横向课题1项。
生物医用纺织品研究团队是以新型纺织材料、新型纺织技术开发和功能器件相结合的研究团队,在徐卫林院士和杨红军教授带领下,积极探索新颖功能纺织材料在生物医学工程中的应用,在心血管组织工程领域和神经组织工程领域开展了大量系统的基础研究和临床转化工作。实验室拥有齐全的纺织功能材料制备技术、纤维加工技术、生物电子器件、以及电子医学的研究设备。
期刊论文:
[1] Chao Xu, Yin Xu, Ming Yang,Yukai Chang, Anmin Nie*, Zhongyuan Liu, Jianglin Wang, and Zhiqiang Luo*. Black‐Phosphorus‐Incorporated Hydrogel as a Conductive andBiodegradable Platform for Enhancement of the Neural Differentiation ofMesenchymal Stem Cells. Advanced Functional Materials,2020, 30, 2000177.
[2] Chao Xu, Yukai Chang, Ping Wu,Kun Liu, Xianzhen Dong, Anmin Nie, Congpu Mu* Zhongyuan Liu, Honglian Dai,Zhiqiang Luo*. Two-Dimensional Germanium Phosphide ReinforcedConductive and Biodegradable Hydrogel Scaffolds Enhance Spinal Cord InjuryRepair. Advanced Functional Materials,2021, 2104440.
[3] Chao Xu, Yukai Chang, Yan Xu,Ping Wu, Congpu Mu*, Anmin Nie, Yanzhen Qu, Deyu Duan, Xiaodong Guo,Zhongyuan Liu, Jianglin Wang*, Zhiqiang Luo*. Silicon-phosphorusnanosheets integrated 3D-printable hydrogel as a bioactive and biodegradablescaffold for vascularized bone regeneration. Advanced Healthcare Materials, 2021, 2101911.
[4] ChaoXu, Yuhao Xia,Pengzhen Zhuang, Wenliang Liu, Congpu Mu*, Zhongyuan Liu, Jianglin Wang, LiliChen, Honglian Dai*, Zhiqiang Luo*. FePSe3-nanosheets-integratedcryogenic 3D-printed multifunctional calcium phosphate scaffolds forsynergistic therapy of osteosarcoma. Small, 2023, 2303636.
[5] Chao Xu, Ping Wu, Kun Yang,Congpu Mu, Binbin Li, Xiaokun Li, Zhouguang Wang, Zhongyuan Liu, Xinyu Wang*,and Zhiqiang Luo*. Multifunctional Biodegradable ConductiveHydrogel Regulating Microenvironment for Stem Cell Therapy Enhances the NerveTissue Repair. Small 2023, 2309793.
[6] Ping Wu#, Chao Xu#, Xianghui Zou, Kun Yang,Yanping Xu, Xueyao Li, Xiaokun Li,* Zhouguang Wang,* Zhiqiang Luo*. Capacitive-Coupling-ResponsiveHydrogel Scaffolds Offering Wireless in Situ Electrical Stimulation Promotes NerveRegeneration. Advanced Materials, 2024, 2310483.
[7] Ping Chen#, Chao Xu#, Ping Wu, Kun Liu,Feixiang Chen, Yun Chen, Honglian Dai*, and Zhiqiang Luo*. WirelesslyPowered Electrical-Stimulation Based on Biodegradable 3D PiezoelectricScaffolds Promotes the Spinal Cord Injury Repair. ACS Nano, 2022, 16 (10):16513-16528.

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