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Methods in Molecular Biology (Clifton, N.J.)|September 2, 2021
Structural Characterization of Silk Fibers by Wide-Angle X-Ray ScatteringZhuochen Lv, Ping Qi, Leitao Cao, et al.Methods in Molecular Biology (Clifton, N.J.)|September 2, 2021
Structural Characterization of Silk Fibers by Small-Angle X-Ray ScatteringZhuochen Lv, Ping Qi, Leitao Cao, et al.Soft Matter|October 13, 2021
Moderate conformational transition promotes the formation of a self-reinforced highly oriented silk fibroin network structureTing Shu, Jing Cui, Zhuochen Lv, et al.Biomacromolecules|April 14, 2021
Mechanism of Mechanical Training-Induced Self-Reinforced Viscoelastic Behavior of Highly Hydrated Silk MaterialsZhuochen Lv, Ting Shu, Jing Ren, et al.Small (Weinheim an Der Bergstrasse, Germany)|July 21, 2021
Mechanical Training-Driven Structural Remodeling: A Rational Route for Outstanding Highly Hydrated Silk MaterialsTing Shu, Zhuochen Lv, Chun-Teh Chen, et al.Materials Horizons|May 3, 2022
Mechanically and electrically biocompatible hydrogel ionotronic fibers for fabricating structurally stable implants and enabling noncontact physioelectrical modulationZhihao Chen, Taiwei Zhang, Chun-Teh Chen, et al.Materials Horizons|November 1, 2022
Cytoskeleton-inspired hydrogel ionotronics for tactile perception and electroluminescent display in complex mechanical environmentsChenchen Dai, Yang Wang, Yicheng Shan, et al.Pageof 1