Hajime Tanaka, PhD
Affiliations: | 1989- | Institute of Industrial Science | The University of Tokyo, Bunkyō-ku, Tōkyō-to, Japan |
Area:
Soft Matter, glass transition, crystallizationWebsite:
http://tanakalab.iis.u-tokyo.ac.jp/Google:
"Hajime Tanaka"Mean distance: (not calculated yet)
Children
Sign in to add traineeTakeshi Kawasaki | grad student | 2005-2010 | University of Tokyo |
Mathieu Leocmach | grad student | 2006-2011 | University of Tokyo |
John Russo | post-doc | University of Tokyo | |
C. Patrick Royall | post-doc | 2008 | ESPCI Paris, PSL Research University, Paris |
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Publications
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Li X, Fang H, Sankaewtong K, et al. (2024) Phase Reentrances and Solid Deformations in Confined Colloidal Crystals. Physical Review Letters. 132: 018202 |
Fan Z, Tanaka H. (2024) Microscopic mechanisms of pressure-induced amorphous-amorphous transitions and crystallisation in silicon. Nature Communications. 15: 368 |
Yanagishima T, Russo J, Dullens RPA, et al. (2023) From ultra-fast growth to avalanche growth in devitrifying glasses. The Journal of Chemical Physics. 159 |
Tong H, Tanaka H. (2023) Emerging exotic compositional order on approaching low-temperature equilibrium glasses. Nature Communications. 14: 4614 |
Hu YC, Tanaka H. (2022) Revealing the role of liquid preordering in crystallisation of supercooled liquids. Nature Communications. 13: 4519 |
Tateno M, Yanagishima T, Tanaka H. (2022) Microscopic structural origin behind slowing down of colloidal phase separation approaching gelation. The Journal of Chemical Physics. 156: 084904 |
Yanagishima T, Russo J, Dullens RPA, et al. (2021) Towards Glasses with Permanent Stability. Physical Review Letters. 127: 215501 |
Persch C, Müller MJ, Yadav A, et al. (2021) The potential of chemical bonding to design crystallization and vitrification kinetics. Nature Communications. 12: 4978 |
Li M, Yue Z, Chen Y, et al. (2021) Revealing thermally-activated nucleation pathways of diffusionless solid-to-solid transition. Nature Communications. 12: 4042 |
Gao Q, Ai J, Tang S, et al. (2021) Fast crystal growth at ultra-low temperatures. Nature Materials |