Junichiro Shiomi, Ph.D.

Affiliations: 
Mechanical Engineering The University of Tokyo, Bunkyō-ku, Tōkyō-to, Japan 
 2010-2011 Mechanical Engineering Massachusetts Institute of Technology, Cambridge, MA, United States 
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"Junichiro Shiomi"

Parents

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Shigeo Maruyama post-doc University of Tokyo (Chemistry Tree)
Gang Chen research scientist 2010-2011 MIT
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Publications

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Koh H, Chiashi S, Shiomi J, et al. (2021) Heat diffusion-related damping process in a highly precise coarse-grained model for nonlinear motion of SWCNT. Scientific Reports. 11: 563
Tambo N, Liao Y, Zhou C, et al. (2020) Ultimate suppression of thermal transport in amorphous silicon nitride by phononic nanostructure. Science Advances. 6
Zhou C, Tambo N, Ashley EM, et al. (2020) Enhanced Reduction of Thermal Conductivity in Amorphous Silicon Nitride Containing Phononic Crystals Fabricated Using Directed Self-Assembly of Block Copolymers. Acs Nano
Guo J, Ju S, Shiomi J. (2020) Design of a highly selective radiative cooling structure accelerated by materials informatics Optics Letters. 45: 343-346
Li H, Shiomi J, Cao B. (2020) Ballistic-Diffusive Heat Conduction in Thin Films by Phonon Monte Carlo Method: Gray Medium Approximation Versus Phonon Dispersion Journal of Heat Transfer-Transactions of the Asme. 142
Hu S, Feng L, Shao C, et al. (2020) Two-path phonon interference resonance induces a stop band in a silicon crystal matrix with a multilayer array of embedded nanoparticles Physical Review B. 102: 24301
Takahashi K, Fujikane M, Liao Y, et al. (2020) Elastic inhomogeneity and anomalous thermal transport in ultrafine Si phononic crystals Nano Energy. 71: 104581
Ota A, Ohnishi M, Oshima H, et al. (2019) Enhancing thermal boundary conductance of graphite-metal interface by triazine-based molecular bonding. Acs Applied Materials & Interfaces
Mu F, Cheng Z, Shi J, et al. (2019) High Thermal Boundary Conductance across Heterogeneous GaN-SiC Bonded Interfaces. Acs Applied Materials & Interfaces
Hu S, Zhang Z, Jiang P, et al. (2019) Disorder limits the coherent phonon transport in two-dimensional phononic crystal structures. Nanoscale
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