
个人简介:
丁晓亚,博士,安徽医科大学第一附属医院研究员。作为项目负责人承担国自然青年项目、安徽医科大学第一附属医院高层次人才启动项目、中国博士后科学基金面上项目等。博士毕业于中国科学院长春应用化学研究所(导师:陈学思院士、肖春生研究员和李杲研究员),之后在中国科学院大学温州研究院进行博士后研究。迄今为止共发表SCI论文20多篇,其中以一作/通讯作者在Advanced Materials、Matter、Advanced Functional Materials、ACS Nano、Nano Today、Materials Horizons等在内的材料、化学和生物医学领域国际知名期刊发表10余篇高水平论文,申请中国发明专利4项。
研究方向:
(1) 动态水凝胶支架的开发及其在皮肤创面愈合方面的应用;
(2) 医用水凝胶柔性传感器的设计与开发;
(3) 智能水凝胶柔性驱动器的设计及在生物医学领域中的应用。
(4) 新型动态水凝胶的构建与机理研究及影响因素探索;
联系方式:
xyding2021@163.com
主持课题:
(1) 中国博士后科学基金面上项目,主持,已结题;
(2) 国家自然科学青年基金,主持,在研;
(3) 安徽医科大学第一附属医院高层次人才启动项目,主持,在研;
代表性论文:
(1) Xiaoya Ding, Wenzhao Li, Luoran Shang*, Yuanjin Zhao*, Weijian Sun*, Controllable contact-destructive hydrogel actuators. Advanced Materials, 2024, 2409965. (中科院一区 IF:27.4, TOP期刊)
(2) Xiaoya Ding, Yunru Yu, Wenzhao Li, Yuanjin Zhao*. In situ 3D-bioprinting MoS2 accelerated gelling hydrogel scaffold for promoting chronic diabetic wound healing. Matter, 2023, 6(3): 1000-1014. (中科院一区IF: 19.967, TOP期刊)
(3) Xiaoya Ding, Gao Li, Peng Zhang, E. Jin, Chunsheng Xiao*, and Xuesi Chen. Injectable self-Healing hydrogel wound dressing with cysteine-specific on-demand dissolution property based on tandem dynamic covalent bonds. Advanced Functional Materials, 2021, 2011230. (中科院一区IF: 19.924, TOP期刊)
(4) Xiaoya Ding, Yunru Yu, Luoran Shang*, and Yuanjin Zhao*. Histidine-triggered GO hybrid hydrogels for microfluidic 3D printing. ACS Nano, 2022, 16(11), 19533-19542. (中科院一区IF: 18.027, TOP期刊)
(5) Xiaoya Ding, Yunru Yu, Wenzhao Li, Feika Bian, Hongcheng Gu, Yuanjin Zhao*. Multifunctional carbon nanotube hydrogels with on-demand removability for wearable electronics. Nano Today, 2024, 54, 102124. (中科院一区IF: 17.4, TOP期刊)
(6) Xiaoya Ding, Lu Fan, Li Wang, Min Zhou*, Yongxiang Wang*, and Yuanjin Zhao*. Designing self-healing hydrogels for biomedical applications. Materials Horizons, 2023, 10, 3929-3947. (中科院一区IF: 13.3, TOP期刊)
(7) Gongting Zhou, Xiang Lin, Wenzhao Li, Hongzheng Li, Qingfei Zhang*, Xiaoya Ding*, Weijian Sun. Polydopamine-integrated tumor decellularized extracellular matrix hydrogel microparticles for wound healing. Chemical Engineering Journal, 2024, 488, 151138. (中科院一区IF: 13.3 TOP期刊)