| 主な公表論文 |  
Superhydrophobicity of thermally annealed aluminum surfaces and its effect on corrosion resistance
 Appl. Phys. Lett. 123, 091603 (2023).
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 Interfacial thermal resonance in an SiC–SiC nanogap with various atomic surface terminations
 Nanoscale, 15, 8603-8610, 2023.
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 Effect of surface wettability on evaporation rate of droplet array
 Physics of Fluids, 35, 037121, 2023.
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 Optimization for ultrafast capillary-driven flow in open rectangular microchannels
 International Journal of Heat and Mass Transfer,123629, 2023.
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 Estimation of Surface Free Energy at Microstructured Surface to Investigate Intermediate Wetting State for Partial Wetting Model
 Soft Matter, 19, 1249-1257, 2023.
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 Contribution of Solid–Liquid–Vapor Interface to Droplet Evaporation
 Colloids and Surfaces A: Physicochemical and Engineering Aspects,130419, 2023.
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 Boundary Slip-Induced Temperature Rise and Film Thickness Reduction Under Sliding/Rolling Contact in Thermal Elastohydrodynamic Lubrication
 Journal of Tribology,144(7),071602, 2022.
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 Quasi-Casimir coupling can induce thermal resonance of adsorbed liquid layers in a nanogap
 Physical Chemistry Chemical Physics,24(19),11758-11769, 2022.
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 Quasi-Casimir coupling induced phonon heat transfer across a vacuum gap
 International Journal of Heat and Mass Transfer,176,121431, 2021.
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 Effects of boundary slips on thermal elastohydrodynamic lubrication under pure rolling and opposite sliding contacts
 Tribology International, 155, 106801, 1-11, 2021.
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 Measurement of effective wetting area at hydrophobic solid–liquid interface
 Journal of Colloid and Interface Science, 591, 474 - 482, 2021.
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 Intermediate Wetting State at Nano/Microstructured Surfaces
 Soft Matter, 16, pp.3514-3521, 2020.
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 Effective Wetting Area Based on Electrochemical Impedance Analysis: Hydrophilic Structured Surface
 Langmuir, 35, 50, pp.16508-16513, 2019.
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 Thermal performance of flat micro heat pipe with converging microchannels
 International Journal of Heat and Mass Transfer, 122, pp.375-382, 2018.
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 Scale Effect of Slip Boundary Condition at Solid-Liquid Interface
 Scientific Reports, 7, 43125, pp. 1-8, 2017.  open access
 
 Molecular dynamics study on condensation/evaporation coefficients of chain molecules at liquid-vapor interface
 The Journal of Chemical Physics, Vol. 143,  pp. 014706-1 - 014706-9, 2015.
 
 Effects of nano/microstructures on performance of Si-based microfuel cells
 Applied Thermal Engineering, Vol. 72, pp. 298-303, 2014.
 
 鎖状分子の凝縮・蒸発係数
 日本機械学会論文集 (B),  79 (806), pp.2149-2159, 2013.
 鎖状分子の蒸発係数に関する分子動力学的研究日本機械学会論文集 (B),  77 (781), pp.1826-1833, 2011.
 
 On the Evaporation Rate of Ultra Thin Liquid Film at the Nanostructured Surface: 
  
  A Molecular Dynamics Study, International Journal of Thermal Sciences, Vol.49, pp.59-66, 2010.
 
 ナノ微細構造面の濡れ挙動に関する分子動力学的研究
 日本機械学会論文集 (B),  73 (728), pp.1084-1091, 2007.
 
 Molecular dynamics simulation on bubble formation in a nanochannel
 International Journal Heat and Mass Transfer, Vol.49, pp.4437-4443, 2006.
 
 マイクロ燃料電池のためのポーラスシリコン膜の試作
 Electrochemistry(電気化学および工業物理化学)誌,Vol.73, No.11, pp.939-941,  2005.
 
 分子境界条件としての凝縮係数について
 日本機械学会論文集 (B),71 (705),pp. 1424-1427, 2005.
 
 A Microscopic Formulation of Condensation Coefficient and Interface Transport Phenomena
 Energy, The International Journal, Vol. 30, pp. 795-805, 2005.
 
 Effects of Solid Heating Surfaces on Nanometer-Sized Liquid Films
 Thermal Science & Engineering, Vol.13 No.24, pp.25-28, 2005.
 
 Molecular Dynamics Studies on the Condensation Coefficients of Water
 The Journal of Physical Chemistry B, Vol. 108, pp.1736-1743, 2004.
 
 Effect of Interface Wettability on Microscale Flow Based on Molecular Dynamics Simulations
 International Journal Heat and Mass Transfer, Vol. 47, No. 3, pp.501-513, 2004.
 
 Inverted Temperature Profile at Liquid-Vapor Interface Based on Nonequilibrium Molecular Dynamics Simulation
 Thermal Science & Engineering, Vol.11 No.4, pp.11-12, 2003.
 
 A General Expression of Condensation Coefficient Based on Transition State Theory and Molecular Dynamics Simulations
 Journal of Chemical Physics, Vol.118, No. 3, pp.1392-1399, 2003.
 
 A Molecular Dynamics Approach to Interphase Mass Transfer Between Liquid and Vapor
 Microscale Thermophysical Engineering, Vol. 6, No. 4, pp. 267-285, 2002.
 
 水の凝縮係数の分子動力学
 日本機械学会論文集B編,68巻671号,pp.1898-1905, 2002.
 
 DSMC Analysis of Interface Mass Transfer in Evaporation/Condensation Based on Molecular Dynamics Study
 Thermal Science and Engineering, Vol. 10, No.1, pp.9-15, 2002.
 
 凝縮・蒸発係数の遷移状態説理論と分子動力学
 日本機械学会論文集B編,67巻656号,pp.1041-1048, 2001.
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