日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

Control of polymers' amorphous-crystalline transition enables miniaturization and multifunctional integration for hydrogel bioelectronics

控制聚合物的非晶态-结晶态转变可实现水凝胶生物电子学的小型化和多功能集成

Sizhe Huang, Xinyue Liu, Shaoting Lin, Christopher Glynn, Kayla Felix, Atharva Sahasrabudhe, Collin Maley, Jingyi Xu, Weixuan Chen, Eunji Hong, Alfred J Crosby, Qianbin Wang, Siyuan Rao

Fatigue-resistant hydrogel optical fibers enable peripheral nerve optogenetics during locomotion

抗疲劳水凝胶光纤使运动过程中的外周神经光遗传学成为可能

Xinyue Liu #, Siyuan Rao #, Weixuan Chen, Kayla Felix, Jiahua Ni, Atharva Sahasrabudhe, Shaoting Lin, Qianbin Wang, Yuanyuan Liu, Zhigang He, Jingyi Xu, Sizhe Huang, Eunji Hong, Todd Yau, Polina Anikeeva #, Xuanhe Zhao #

Control of Polymers' Amorphous-crystalline Transition for Hydrogel Bioelectronics Miniaturization and Multifunctional Integration

控制聚合物的非晶态-结晶态转变以实现水凝胶生物电子微型化和多功能集成

Sizhe Huang, Xinyue Liu, Shaoting Lin, Christopher Glynn, Kayla Felix, Atharva Sahasrabudhe, Collin Maley, Jingyi Xu, Weixuan Chen, Eunji Hong, Alfred J Crosby, Qianbin Wang, Siyuan Rao