1 |
Amphiphobic Septa Enhance the Mechanical Stability of Free-Standing Bilayer Lipid Membranes Yamaura D, Tadaki D, Araki S, Yoshida M, Arata K, Ohori T, Ishibashi K, Kato M, Ma T, Miyata R, Yamamoto H, Tero R, Sakuraba M, Ogino T, Niwano M, Hirano-Iwata A Langmuir, 34(19), 5615, 2018 |
2 |
A solid acid of tungsta-niobia more active than aluminosilicates for decompositions of cumene, ethylbenzene, and toluene Hino M, Kurashige M, Matsuhashi H, Arata K Applied Catalysis A: General, 310, 190, 2006 |
3 |
Biodiesel fuel production with solid amorphous-zirconia catalysis in fixed bed reactor Furuta S, Matsuhashi H, Arata K Biomass & Bioenergy, 30(10), 870, 2006 |
4 |
Synthesis of a ceramic acid of tungstated alumina more active than silica-alumina for decompositions of cumene, ethylbenzene, and toluene Hino M, Matsuhashi H, Arata K Catalysis Letters, 107(3-4), 161, 2006 |
5 |
The surface structure of sulfated zirconia: Studies of XPS and thermal analysis Hino M, Kurashige M, Matsuhashi H, Arata K Thermochimica Acta, 441(1), 35, 2006 |
6 |
Catalytic action of sulfated tin oxide for etherification and esterification in comparison with sulfated zirconia Furuta S, Matsuhashi H, Arata K Applied Catalysis A: General, 269(1-2), 187, 2004 |
7 |
Distinction of acid-type on solid acid surface by comparison of adsorption heats of nitrogen and argon Matsuhashi H, Yamagata K, Arata K Chemistry Letters, 33(5), 554, 2004 |
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Influence of calcination temperature on the surface acidity of the solid superacid of sulfated alumina Matsuhashi H, Sato D, Arata K Reaction Kinetics and Catalysis Letters, 81(1), 183, 2004 |
9 |
One-step preparation of manganese-, iron-, and aluminium-promoted sulfated zirconias for reaction of butane to isobutane Hino M, Arata K Reaction Kinetics and Catalysis Letters, 81(2), 321, 2004 |
10 |
Isomerizations of cycloheptane to methylcyclohexane and cyclooctane to ethylcyclohexane catalyzed by sulfated zirconia Satoh D, Matsuhashi H, Nakamura H, Arata K Catalysis Letters, 89(1-2), 105, 2003 |