Session Details

[[C]C401-4am]05. Physical Chemistry -Chemical Kinetics and Dynamics-

Sat. Mar 29, 2025 9:00 AM - 11:10 AM JST
Sat. Mar 29, 2025 12:00 AM - 2:10 AM UTC
[C]C401(C401, Bldg. 2, Area 2 [4F])

[[C]C401-4am-01]Monolayer Electrochemical Polymerization Based on Monomer-Electrode Interaction

○Yudai Yokoyama1, Yasunobu Ando2, Yuzu Kobayashi3,4, Yoshimitsu Itoh1,4 (1. Graduate School of Engineering, The University of Tokyo, 2. IIR, Science Tokyo, 3. RIKEN, 4. JST PRESTO)

[[C]C401-4am-02]Kinetic modulation of hydrogen evolution reaction activity at nanostructured electrode

○Daiki Sato1, Takahiro Hayashi1, Tomohiro Fukushima2,3, Masaki Itatani2, Kei Murakoshi2 (1. Graduate School of Chemical Sciences and Engineering, Hokkaido University, 2. Faculty of Science, Hokkaido University, 3. JST-PRESTO)

[[C]C401-4am-03]Modulation of oxygen evolution reaction by cavity-arrayed electrode: electrolyte dependence

○Daiki Ashizawa1, Tomohiro Fukushima2,3, Masaki Itatani2, Kei Murakoshi2 (1. Graduate School of Chemical Sciences and Engineering, Hokkaido University, 2. Faculty of Science, Hokkaido University, 3. JST-PRESTO)

Break

[[C]C401-4am-04]Growth Oscillation in Chemical Garden

○Yujin Kubodera1, Muneyuki Matsuo1,2, Satoshi Nakata1 (1. Graduate School of Integrated Sciences for Life, 2. Graduate School of Arts and Sciences, Univesity of Tokyo)

[[C]C401-4am-05]Rotational motion of self-propelled object induced by mass transport of camphor molecules

○Masakazu Kuze1,2, Nozomi Kawai1, Muneyuki Matsuo1,3, Hiroyuki Kitahata4, Masaharu Nagayama5, Satoshi Nakata1 (1. Graduate School of Integrated Sciences for Life, Hiroshima University, 2. Meiji Institute for Advanced Study of Mathematical Sciences (MIMS), Meiji University, 3. Graduate School of Arts and Sciences, The University of Tokyo, 4. Graduate School of Science, Chiba University, 5. Research Institute for Electronic Science, Hokkaido University)

[[C]C401-4am-06]Modulation of Oscillatory Motion in Light-Driven Self-Oscillating Crystals Utilizing Polarization-Dependent Hysteresis

○Yoshiyuki Kageyama1, Makiko Matsuura1 (1. Hokkaido University)