研究者
J-GLOBAL ID:201501012736389848   更新日: 2024年05月17日

キング ダニエル ルドルフ

King Daniel R
所属機関・部署:
職名: テニュアトラック助教
ホームページURL (1件): http://www.labtsm.com
研究分野 (4件): 生体材料学 ,  高分子化学 ,  複合材料、界面 ,  高分子材料
研究キーワード (8件): Anisotropy ,  Viscoelasticity ,  Biomaterials ,  Rheology ,  Adhesion ,  3D Printing ,  Composites ,  Hydrogels
競争的資金等の研究課題 (4件):
  • 2020 - 2023 Fiber Reinforced Soft Composites with Tunable Extensibility, Stiffness, and Strength for Synthetic Bio-tissue Applications
  • 2017 - 2022 犠牲結合原理が導く戦略:金属を凌駕するソフト・ハード複合強靭材料の創製と機能開拓
  • 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
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特許 (7件):
  • High Capacity Easy Release Extended Use Adhesive Devices.
  • Weight-Bearing Adhesives with Adjustable Angles.
  • Composite Comprising Fabric and Polyampholyte Hydrogel and Preparation Method Thereof
  • High Capacity Easy Release Extended Use Adhesive Closure Device.
  • High Capacity Easy Release Extended Use Adhesives.
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講演・口頭発表等 (47件):
  • 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)
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学歴 (3件):
  • 2012 - 2015 University of Massachusetts Amherst Department of Polymer Science and Engineering Ph.D., in Polymer Science and Engineering
  • 2010 - 2012 University of Massachusetts Amherst Department of Polymer Science and Engineering M.S., in Polymer Science and Engineering
  • 2006 - 2010 Pennsylvania State University College of Earth and Mineral Sciences B.S., Materials Science and Engineering
学位 (3件):
  • Ph.D. (Polymer Science and Engineering)
  • M.S. (Polymer Science and Engineering)
  • B.S. (Materials Science and Engineering)
経歴 (2件):
  • 2015/11 - 現在 Faculty of Advanced Life Science, Hokkaido University テニュアトラック助教
  • 2015/06 - 2015/10 Faculty of Advanced Life Science, Hokkaido University Postdoctoral Fellow
所属学会 (5件):
The American Chemical Society (ACS) ,  高分子学会 ,  The Materials Research Society (MRS) ,  The Adhesion Society ,  The American Physical Society (APS)
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