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Showing results 1 to 7 of 7
TypeAuthor(s)TitleOther TitlesCitationCitation(alt)Issue Date
articleZhu, Shilei; Wang, Yan; Wang, Zhe; Chen, Lin; Zhu, Fengbo; Ye, Yanan; Zheng, Yong; Yu, Wenwen; Zheng, QiangMetal-Coordinated Dynamics and Viscoelastic Properties of Double-Network Hydrogels-Gels-4-Feb-2023
articleGuo, Yun Zhou; Nakajima, Tasuku; Mredha, Md Tariful Islam; Guo, Hong Lei; Cui, Kunpeng; Zheng, Yong; Cui, Wei; Kurokawa, Takayuki; Gong, Jian PingFacile preparation of cellulose hydrogel with Achilles tendon-like super strength through aligning hierarchical fibrous structure-Chemical engineering journal-15-Jan-2022
articleZheng, Yong; Matsuda, Takahiro; Nakajima, Tasuku; Cui, Wei; Zhang, Ye; Hui, Chung-Yuen; Kurokawa, Takayuki; Gong, Jian PingHow chain dynamics affects crack initiation in double-network gels-Proceedings of the National Academy of Sciences of the United States of America (PNAS)-7-Dec-2021
articleCui, Wei; Huang, Yiwan; Chen, Liang; Zheng, Yong; Saruwatari, Yoshiyuki; Hui, Chung-Yuen; Kurokawa, Takayuki; King, Daniel R.; Gong, Jian PingTiny yet tough : Maximizing the toughness of fiber-reinforced soft composites in the absence of a fiber-fracture mechanism-Matter-3-Nov-2021
theses (doctoral - abstract and summary of review)鄭, 庸Study on the Effect of Polymer Dynamics and Phase Separation on the Mechanical Performance of Double Network Materials [an abstract of dissertation and a summary of dissertation review]ダブルネットワーク材料の力学性能に及ぼすポリマーダイナミクスと相分離の影響に関する研究 [論文内容及び審査の要旨]--24-Sep-2021
theses (doctoral - abstract of entire text)鄭, 庸Study on the Effect of Polymer Dynamics and Phase Separation on the Mechanical Performance of Double Network Materials [an abstract of entire text]ダブルネットワーク材料の力学性能に及ぼすポリマーダイナミクスと相分離の影響に関する研究 [全文の要約]--24-Sep-2021
article (author version)Zheng, Yong; Kiyama, Ryuji; Matsuda, Takahiro; Cui, Kunpeng; Li, Xueyu; Cui, Wei; Guo, Yunzhou; Nakajima, Tasuku; Kurokawa, Takayuki; Gong, Jian PingNanophase Separation in Immiscible Double Network Elastomers Induces Synergetic Strengthening, Toughening, and Fatigue Resistance-Chemistry of Materials-11-May-2021
Showing results 1 to 7 of 7

 

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