周鑫

发布者:张怡茹发布时间:2023-10-30浏览次数:4997


周鑫,博士后副研究员,硕士生导师,江苏省卓越博士后。

邮箱:zhouxin@seu.edu.cn


工作经历及教育背景

20256-至今,太阳成城集团tyc234cc古天乐,太阳成城集团tyc234cc古天乐,博士后副研究员

202010-20256月,太阳成城集团tyc234cc古天乐,太阳成城集团tyc234cc古天乐,至善博士后(合作导师:顾忠泽教授)

20197-20206月,中国科学院化学研究所,科研助理

20149-20196月,中国科学院化学研究所,有机化学,博士(导师:王树研究员)

20109-20146月,武汉理工大学,复合材料与工程,学士


研究方向

1、服务于类器官培养与器官芯片构建的仿生水凝胶开发

开发具有动态微环境响应特性的水凝胶体系,建立可编程仿生细胞外基质的构建方法。

2、先进光敏材料开发与增材制造

基于分子工程策略研发新型光固化材料,融合双光子聚合技术,为仿生细胞支架及微生理系统提供跨尺度制造解决方案,赋能组织工程与微生理系统研究。

3、共轭高分子材料的合成与应用

围绕光电响应型共轭聚合物的分子精准合成,通过构象调控与自组装技术,构筑生物-电子融合界面系统。


科研项目:

1、国家自然科学基金面上项目,20251-202812月,主持

2、中国博士后科学基金特别资助,20247-202610月,主持

3、国家资助博士后研究人员计划,20247-202610月,主持

4、中国博士后科学基金面上项目,20246-202610月,主持

5、国家自然科学基金青年项目,20221-202412月,主持

6、江苏省自然科学基金青年项目,20217-20246月,主持

7、江苏省博士后科研资助A等,20216-202310月,主持

8、中国博士后科学基金面上项目,20216-202310月,主持


代表性论文:

1Z. Di, Y. Xiang, Y. Pan, Y. Shao, X. Fan, Y. Hua, G. Xu, Z. Gu, X. Zhou*, Hydrogen Bond-Driven Conductive Thermosensitive Hydrogel for Advancing Endoscopic Electrosurgery, Adv. Healthc. Mater.2025, 14, 2501495.

2X. Zhou, Z. Gu, Applications and Prospects of 3D Conductive Polymer Micro-Nano Electrodes in Brain Organoid Research (in Chinese). Chin. Sci. Bull.2025, 70, 2981-2997.

3X. Zhou, S. Fang, Y. Hu, X. Du, H. Ding, R. Chai, J. Han, J. Xie, Z. Gu, Photoinduced Double Hydrogen Atom Transfer for Polymerization and 3D printing of Conductive Polymer, Nat. Synth.2024, 3, 1145-1157.

4X. Zhou, X. Liu, Z. Gu, Photoresist Development for 3D Printing of Conductive Microstructures via Two-Photon Polymerization. Adv. Mater. 2024, 36, 2409326.

5X. Zhou, P. Zhang, H. Ding, H. Wang, Z. Gu, Enhanced Antibiofilm Photodynamic Therapy: Leveraging the Slow Photon Effect for Maximized Efficacy with Minimal Photosensitizer and Light Doses, Nano Today2024, 56, 102225.

6X. Zhou, Y. Zhang, H. Ding, J. Liao, Q. Li, Z. Gu, Begonia-Inspired Slow Photon Effect of a Photonic Crystal for Augmenting Algae Photosynthesis, ACS Nano2022, 16, 21334−21344.

7X. Zhou, Y. Zeng, F. Lv, H. Bai, S. WangOrganic Semiconductor−Organism Interfaces for Augmenting Natural and Artificial Photosynthesis,Acc. Chem. Res.2022, 55, 156–170.

8X. Zhou, Y. Zeng, Y. Tang, Y. Huang, F. Lv, L. Liu, S. Wang,Artificial Regulation of State Transition for Augmenting Plant Photosynthesis using Synthetic Light-Harvesting Polymer Materials,Sci. Adv.2020,6, eabc5237.

9X. Zhou, F. Lv, L. Liu, Y. Huang, S. Wang, Bacteriorhodopsin-Based Biophotovoltaic Devices Driven by Chemiluminescence as Endogenous Light Source, Adv. Opt. Mater.2020, 8, 1901551.

10X. Zhou, F. Lv, Y. Huang, L. Liu, S. Wang, Biohybrid Conjugated Polymer Materials for Augmenting Energy Conversion of Bioelectrochemical Systems, Chem. Eur. J.2020, 26, 15065-15073.

11X. Zhou, P. Gai, P. Zhang, H. Sun, F. Lv, L. Liu, S. Wang, Conjugated Polymer Enhanced Photoelectric Response of Self-Circulating Photosynthetic Bioelectrochemical Cell, ACS Appl. Mater. Interfaces2019, 11, 38993-39000.

12X. Zhou, L. Zhou, P. Zhang, F. Lv, L. Liu, R. Qi, Y. Wang, M. -Y. Shen, H. -H. Yu, G. Bazan, S. Wang, Conducting Polymers-Thylakoid Hybrid Materials for Water Oxidation and Photoelectric Conversion, Adv. Electron. Mater.2019, 5, 1800789.

13X Zhou, P Zhang, F Lv, L Liu, S Wang, Photoelectrochemical Strategy for Discrimination of Microbial Pathogens using Conjugated Polymers, Chem. Asian J.2018, 13, 3469-3473.