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徐超

作者:黄强 发布日期:2024-10-28 浏览:

工学博士,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”。华中科技大学工学博士、博士后,主要从事生物材料与组织工程研究。近年来在Advanced Materials; Advanced Functional Materials; ACS Nano; Nano Energy; Bioactive Materials; Advanced Healthcare Materials等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。

研究领域:

1. 生物医用材料

2. 组织再生修复

代表性论文:

[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 and Biodegradable Platform for Enhancement of the Neural Differentiation of Mesenchymal 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 Reinforced Conductive and Biodegradable Hydrogel Scaffolds Enhance Spinal Cord Injury Repair. 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-phosphorus nanosheets integrated 3D-printable hydrogel as a bioactive and biodegradable scaffold for vascularized bone regeneration. Advanced Healthcare Materials, 2021, 2101911.

[4] Chao Xu, Yuhao Xia, Pengzhen Zhuang, Wenliang Liu, Congpu Mu*, Zhongyuan Liu, Jianglin Wang, Lili Chen, Honglian Dai*, Zhiqiang Luo*. FePSe3-nanosheets-integrated cryogenic 3D-printed multifunctional calcium phosphate scaffolds for synergistic 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 Conductive Hydrogel Regulating Microenvironment for Stem Cell Therapy Enhances the Nerve Tissue 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-Responsive Hydrogel Scaffolds Offering Wireless in Situ Electrical Stimulation Promotes Nerve Regeneration. Advanced Materials, 2024, 2310483.

[7] Ping Chen#, Chao Xu#, Ping Wu, Kun Liu, Feixiang Chen, Yun Chen, Honglian Dai*, and Zhiqiang Luo*. Wirelessly Powered Electrical-Stimulation Based on Biodegradable 3D Piezoelectric Scaffolds Promotes the Spinal Cord Injury Repair. ACS Nano, 2022, 16 (10): 16513-16528.

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