Research field (2):
Material fabrication and microstructure control
, Transfer phenomena and unit operations
Research theme for competitive and other funds (3):
2024 - 2027 ハイパワースーパーキャパシタへ展開するバイオ炭から高性能カーボン材料創成
2012 - 2015 Development of the novel graphene material using by the supercritical fluid technology at lower temperatures
2006 - 2009 臨界点近傍の物性値の急激な変化を利用した環境汚染物質除去装置に関する研究
Papers (93):
F. Yao, W. Li, S. K. SKS, C. Fukuhara, S. Badhulika, C. Y. Kong. Scalable one-step synthesis of reduced graphene oxide: Towards flexible transparent conductive films and active supercapacitor electrodes. Chemical Engineering Journal. 2024. accepted
G. Cai, Y. Fu, C. Y. Kong. Comprehensive volumetric property of eco-friendly pressurized fluids by experimental, theoretical modeling, and MD simulation for sustainable oil extraction from waste rice bran. ACS Sustainable Chemistry & Engineering. 2024. 325-345
Y. Fu, G. Cai, T. Funazukuri, C. Y. Kong. Diffusion coefficients of zirconium (IV) acetylacetonate: Measurements and correlation in both pressurized liquid and supercritical fluid. Journal of Molecular Liquids. 2024. 124149
M. G. Mathias, I. Okajima, Y. Aoki, C. Y. Kong, A. Itika, E. Elisante, T. Sako. Extraction of high-quality rice bran oil with CO2-expanded acetone for biofuel production. Fuel. 2024. 129491
F. Yao, W. Li, S. Khainunni, J. Ma, C. Fukuhara, C. Y. Kong. One-step synthesis of fragment-reduced graphene oxide as an electrode material for supercapacitors. ACS Applied Materials & Interfaces. 2023. 42424-42438