2019 - 2020 Resisting Composite Rupture through Macroscale Double Networks
2018 - 2018 複雑な形状に適したドレープ性により接着性を制御した接着材料の研究
論文 (38件):
Masahiro Yoshida, Ryuji Kiyama, Ye Zhang, Daniel R. King, Takayuki Kurokawa, Jian Ping Gong. Pre-yielding and necking process of double network hydrogels revealed by sample geometry effects. Extreme Mechanics Letters. 2024. 69. 102163-102163
Gumi Wei, Yumeko Kudo, Takahiro Matsuda, Zhi Jian Wang, Qi Feng Mu, Daniel R. King, Tasuku Nakajima, Jian Ping Gong. Sustainable mechanochemical growth of double-network hydrogels supported by vascular-like perfusion. Materials Horizons. 2023
Ruijie Zhu, Huijun Yang, Wei Cui, Laras Fadillah, Tianhong Huang, Zetao Xiong, Chunmei Tang, Damian Kowalski, Sho Kitano, Chunyu Zhu, et al. High strength hydrogels enable dendrite-free Zn metal anodes and high-capacity Zn-MnO2 batteries via a modified mechanical suppression effect. Journal of Materials Chemistry A. 2022. 10. 6. 3122-3133
Wei Cui, Yiwan Huang, Liang Chen, Yong Zheng, Yoshiyuki Saruwatari, Chung-Yuen Hui, Takayuki Kurokawa, Daniel R. King, Jian Ping Gong. Tiny yet tough: Maximizing the toughness of fiber-reinforced soft composites in the absence of a fiber-fracture mechanism. Matter. 2021
Tsuyoshi Okumura, Riku Takahashi, Katsumi Hagita, Daniel R. King, Jian Ping Gong. Improving the strength and toughness of macroscale double networks by exploiting Poisson’s ratio mismatch. Scientific Reports. 2021. 11. 1
Scaling the Toughness of Soft Composites to New Heights through Fiber Reinforcement
(International Webinar on Gels and Networks 2021)
A Simple Macroscale Model of Double Networks
(The 70th SPSJ Symposium on Macromolecules 2021)
Double Networks: From Molecular-scale to Macro-scale
(The 70th SPSJ Annual Meeting 2021)
From Micro to Macro: Extending the ‘Double Network Concept’ to Large Length Scales
(Invited Lecture, Pohang University of Science and Technology 2021)
From Micro to Macro: Extending the ‘Double Network Concept’ to Large Length Scales
(ACS Spring Meeting: Macromolecular Chemistry: The Second Century 2021)