个人信息
Personal Information
联系方式
Contact Information
个人简介
Personal Profile
唐立雪长期从事于液态金属柔性可拉伸电子的研究,唐立雪开发了一系列兼具优异电学性能、变形能力和生物相容性的液态金属-高分子弹性体材料,并基于这些材料建立了一套完备的柔性可拉伸电路的制备方案,制备方案包括:液态金属弹性体材料的开发、制备和优化;柔性可拉伸电路的大规模大面积印刷;柔性可拉伸电路与刚性电子器件的软硬连接;多层柔性可拉伸电路的制备;液态金属电路的可靠封装。在柔性可拉伸电路的制备基础上,唐立雪还开发了一系列的柔性可穿戴系统,如用于动作捕捉的智能手套;用于多导联心电监测和汗液中离子监测的智能T恤;用于血氧浓度、心跳以及温度监测的柔性血氧贴片;用于手部动作识别的液态金属多层纹身。液态金属柔性可拉伸系统同样可以适用于各类植入性电子器件,如可用于海马神经元长期培养和信号记录的柔性可拉伸神经电极阵列;用于电转染基因递送抑制血管内膜增生的电子血管外支架;以及用于电转染基因递送和电刺激促进细胞增殖和迁移的组织工程电子血管。
唐立雪近年来在Science Advances, Nature Communications, Advanced Science等国际著名期刊上共发表SCI论文14篇,申请国家专利9项,其中,其关于液态金属电子纹身的工作(Science Advances, 2021, 7, eabe3778)被国际顶尖杂志NatureElectronics以题为Electronictattoos layer up (Nature Electronics, 2021, 4, 94)的Research highlight文章进行重点报道;申请人关于液态金属柔性可拉伸电路制备和应用的工作得到了国际知名媒体如Materials Today, Science Daily,Chemical & Engineering News的广泛关注和报道。
2022.01-2024.12 基于表面镶嵌结构的粘附性液态金属电极的研究, 82102212, 国家自然科学基金青年科学基金项目, 主持。
2022.06-2024.12 可动态监测并长期粘附的表皮电生理电极的研究, KM202210025022, 北京市教委科技一般项目, 主持。
2021.12-2024.12 脑类器官柔性电极的研发, 2021YFF1200802-1, 科技部项目-国家重点研发计划, 课题参与。
1. Lixue Tang, Jin Shang, and Xingyu Jiang*, Multi-layered electronic transfer tattoo that can enable the crease amplification effect, Sci. Adv., 2021, eabe3778.
2. Lixue Tang*, Shuaijian Yang, Kuan Zhang* and Xingyu Jiang*, Skin electronics from biocompatible in situ welding enabled by intrinsically sticky conductors, Adv. Sci., 2022, Accepted.
3. Lixue Tang, Lei Mou, JinShang, Jiabin Dou, Wei Zhang, and Xingyu Jiang*, Metal-hygroscopic polymer conductors that can secrete solders for connections in stretchable devices, Mater.Horiz., 2020, 7, 1186-1194.
4. Lixue Tang, Lei Mou, WeiZhang, Xingyu Jiang*, Large-scale fabrication of highly elastic conductors on abroad range of surfaces, ACS Appl. Mater. Interfaces, 2019, 11,7138-7147.
5. Lixue Tang, Shiyu Cheng,Luyao Zhang, Hanbing Mi, Lei Mou, Shuaijian Yang, Zhiwei Huang, Xinghua Shi,and Xingyu Jiang*. Printable metal-polymer conductors for highly stretchable bio-devices,iScience, 2018, 4, 302-311.
6. Jiabin Dou#, Lixue Tang#, LeiMou, Rufan Zhang*, and Xingyu Jiang*, Stretchable conductive adhesives for connection of electronics in stretchable wearable devices based on carbon nanotubes/liquid metals nanocomposites. Compos. Sci. Technol., 2020, 197, 108237.(# Equal contribution)
7. Li Ding, Chen Hang, Shiyu Cheng, Liujun Jia, Lei Mou, Lixue Tang, Chunliang Zhang,Yangzhouyun Xie, Wenfu Zheng, Yan Zhang*, Xingyu Jiang*, A soft, conductive external stent inhibits intimal hyperplasia in vein grafts by electroporation and mechanical restriction, ACS Nano, 2020, 14, 16770-16780.
8. Shiyu Cheng, Chen Hang, Li Ding, Liujun Jia, Lixue Tang, Lei Mou, Jie Qi, Ruihua Dong, Wenfu Zheng, Yan Zhang*,Xingyu Jiang*, Electronic blood vessel, Matter, 2020, 3, 1664-1684.
9. Yifeng Lei, Lixue Tang,Yangzhouyun Xie, Yunlei Xianyu, Lingmin Zhang, Peng Wang, Yoh Hamada, KaiJiang, Wenfu Zheng, Xingyu Jiang*, Gold nanoclusters-assisted delivery of NGF siRNA for effective treatment of pancreatic cancer, Nat. Commun., 2017, 8,15130.
10. Lei Mou, Jie Qi, Lixue Tang,Ruihua Dong, Yong Xia*, Yuan Gao*, Xingyu Jiang*, Highly stretchable and biocompatible liquid metal-elastomer conductors for self-healing electronics, Small, 2020, 16, 2005336.
11. Ruihua Dong, Xiaoyan Liu, Shiyu Cheng, Lixue Tang, Mian Chen, Leni Zhong, Zhen Chen, Shaoqin Liu*, XingyuJiang*, Highly stretchable metal-polymer conductor electrode array for electrophysiology, Adv. Healthc. Mater., 2020, 10, 2000641.
12. Chunliang Zhang, Ruitao Cha*, Ruyu Li, Lixue Tang, Keying Long, Zhenlin Zhang*, Lin Zhang*, XingyuJiang*, Cellophane or nanopaper: which is better for the substrates of flexible electronic devices? ACS Sustain. Chem. Eng., 2020, 8, 7774-7784.
13. Nuoxin Wang, Yunhu Peng, Wenfu Zheng, Lixue Tang, Shiyu Cheng, Junchuan Yang, Shaoqin Liu, WeiZhang, Xingyu Jiang*, A strategy for rapid construction of blood vessel-like structures with complex cell alignments, Macromol. Biosci., 2018, 18,1700408.
14. Nuoxin Wang, Lixue Tang,Wenfu Zheng, Yunhu Peng, Shiyu Cheng, Yifeng Lei, Lingmin Zhang, Bingfeng Hu, ShaoqinLiu*, Wei Zhang*, Xingyu Jiang*, A strategy for rapid and facile fabrication of controlled, layered blood vessel-like structures, RSC Adv. 2016, 6,55054-55063.
文件上传中...