D. Inoue, Y. Fukuzumi, and Y. Moritomo, “Volume effect of organic solvent on electrochemical Seebeck coefficient of [Fe(CN)6]4-/[Fe(CN)6]3- in water”, Jpn. J. Appl. Phys., 59, 037001 (2020)
D. Inoue, H. Niwa, H. Nitani and Y. Moritomo, “Scaling relation between electrochemical Seebeck coefficient for Fe2+/Fe3+ in organic solvent and its viscosity”, J. Phy. Soc. Jpn. Lett. 90, 033602 (2021)
Y. Moritomo, Y. Yoshida, H. Iwaizumi, D. Inoue, I. Nagai and T. Shibata, “Structural Phase Transition Triggered by Na Ordering in Na1.96Cd[Fe(CN)6]0.99”, J. Phy. Soc. Jpn. Lett., 90, 1(2021)
H. Iwaizumi, D. Inoue, T. Yasuda and Y. Moritomo, “Origin of the material dependence of temperature coefficient of redox potential in conjugated polymers”, Appl. Phys. Exp, 14, 037001(2021)
Y. Moritomo, Y. Yoshida, D. Inoue, H. Iwaizumi, S. Kobayashi, S. Kawaguchi and T. Shibata, “Origin for material dependence of temperature coefficient of redox potential in coordination polymers”, J. Phy. Soc. Jpn. Lett, 90, 063801(2021)
Y. Nomura, D. Inoue and Y. Moritomo, “Control of Fe3+ coordination by excess Cl- in alcohol solutions”, RSC Adv., 12, 17932 (2022)
A. Wake, D. Inoue and Y. Moritomo, “A liquid thermoelectric device composed of organic solution”, Appl. Phys. Exp, 15, 054002(2022)
T. Komatsu, D. Inoue and Y. Moritomo, “Electrochemical Seebeck coefficient of Fe2+/Fe3+ in acetone-methanol mixed solution”, Jpn. J. Appl. Phys., 61, 060904(2022)
A. Wake, D. Inoue and Y. Moritomo, “Liquid thermoelectric conversion devices composed of several organic solvents”, Jpn. J. Appl. Phys., 62, 014002 (2022)
D. Inoue, T. Komatsu, H. Niwa, T. Ina, H. Nitani, H. Abe and Y. Moritomo, “Coordination States of Fe3+ and Fe2+ Dissolved in Organic Solvents”, J. Phy. Soc. Jpn., 91, 094605 (2022)
D. Inoue, T. Komatsu, H. Niwa, H. Nitani, H. Abe and Y. Moritomo, “Local structure of Fe2+ and Fe3+ in organic solvents”, Jpn. J. Appl. Phys., 61, 112003 (2022)
Y. Nomura, D. Inoue and Y. Moritomo, “Temperature switch of electrochemical Seebeck coefficient of Fe2+/Fe3+ via formation of [FeCl4]2-/[FeCl4]-”, RSC Adv., 13, 3971 (2023)
Y. Nomura, D. Inoue and Y. Moritomo, “Resistance components in organic electrolytes containing Fe2+/Fe3+ for liquid thermoelectric conversion devices”, New J. Chem., 47, 18756 (2023)
Y. Tanaka, A. Wake, D. Inoue, and Y. Moritomo, “Concentration gradient effect in liquid thermoelectric device composed of organic-solvent-added aqueous solution containing K4[Fe(CN)6]/ K3[Fe(CN)6]”, Jpn. J. Appl. Phys., 63, 014002 (2024)
D. Inoue, and Y. Moritomo, “Concentration dependence of resistance components in solutions containing dissolved Fe2+/Fe3+”, RSC adv. 14, 6292 (2024)
A. Wake, D. Inoue, and Y. Moritomo, “Precipitation enhancement of liquid thermoelectric conversion with Fe(ClO4)2/Fe(ClO4)3 dissolved in DMF”, Ene Adv., accepted
selected as front cover
T. Aiba, D. Inoue, and Y. Moritomo, “Coated electrodes for liquid thermoelectric conversion devices to enhance Fe2+/Fe3+ redox kinetics”, Sus Ene Fuels., accepted.selected as front cover他 3 件(査読有り)
受賞表彰
井上大…「第八回 TIA ナノグリーン・サマースクール優秀賞」、2020/8
井上大…「筑波大学物理学専攻長賞」、2021/3
D. Inoue, H. Niwa, H. Nitani and Y. Moritomo…”JPSJ Papers of Editors’ Choice” 2021/3(文献[2])
D. Inoue, H. Niwa, H. Nitani and Y. Moritomo…”JPS Hot Topics” 2021/4(文献[2])