1 |
Visualized cell characteristics by a two-dimensional model of vanadium redox flow battery with interdigitated channel and thin active electrode Ishitobi H, Saito J, Sugawara S, Oba K, Nakagawa N Electrochimica Acta, 313, 513, 2019 |
2 |
Maximized specific activity for the methanol electrooxidation by the optimized PtRu-TiO2-carbon nano-composite structure Ishitobi H, Kawatsu Y, Kudo Y, Nakagawa N International Journal of Hydrogen Energy, 44(58), 30743, 2019 |
3 |
Anode catalyst with enhanced ethanol electrooxidation activity by effective interaction between Pt-Sn-SiO2 for a direct ethanol fuel cell Ishitobi H, Ino Y, Nakagawa N International Journal of Hydrogen Energy, 42(43), 26897, 2017 |
4 |
Tough Physical Double-Network Hydrogels Based on Amphiphilic Triblock Copolymers Zhang HJ, Sun TL, Zhang AK, Ikura Y, Nakajima T, Nonoyama T, Kurokawa T, Ito O, Ishitobi H, Gong JP Advanced Materials, 28(24), 4884, 2016 |
5 |
Performances of Cathode Catalyst Layer with Carbon-Alloy Nanofiber in Different Length for Polymer Electrolyte Fuel Cells Ishitobi H, Ida A, Anayama S, Nakagawa N Journal of Chemical Engineering of Japan, 49(12), 995, 2016 |
6 |
Optimized CeO2 content of the carbon nanofiber support of PtRu catalyst for direct methanol fuel cells Kunitomo H, Ishitobi H, Nakagawa N Journal of Power Sources, 297, 400, 2015 |
7 |
Exosome-formed synthetic microRNA-143 is transferred to osteosarcoma cells and inhibits their migration Shimbo K, Miyaki S, Ishitobi H, Kato Y, Kubo T, Shimose S, Ochi M Biochemical and Biophysical Research Communications, 445(2), 381, 2014 |
8 |
Dehydration and Hydration Behavior of Mg-Co Mixed Hydroxide as a Material for Chemical Heat Storage Ryu J, Mizuno T, Ishitobi H, Kato Y Journal of Chemical Engineering of Japan, 47(7), 579, 2014 |
9 |
Improved reaction kinetics and selectivity by the TiO2-embedded carbon nanofiber support for electro-oxidation of ethanol on PtRu nanoparticles Nakagawa N, Ito Y, Tsujiguchi T, Ishitobi H Journal of Power Sources, 248, 330, 2014 |
10 |
Evaluation of Heat Output Densities of Lithium Chloride-Modified Magnesium Hydroxide for Thermochemical Energy Storage Ishitobi H, Hirao N, Ryu J, Kato Y Industrial & Engineering Chemistry Research, 52(15), 5321, 2013 |