Koji Okuwaki
Rikkyo University
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Publication
Featured researches published by Koji Okuwaki.
Journal of Physical Chemistry B | 2018
Koji Okuwaki; Yuji Mochizuki; Hideo Doi; Taku Ozawa
In the analyses of miscibility behaviors of macromolecules and polymers, dissipative particle dynamics (DPD) simulations are generally performed. In these simulations, the so-called χ parameters describing the effective interactions among particles are crucial. It has been known that such parameters can be obtained within the classical or empirical force field frameworks. However, there is a potential problem that charge transfer and polarization occasionally occur. Additionally, satisfactory reference parameters are not available for some cases. Therefore, we developed a new procedure to evaluate the set of parameters by using the ab initio fragment molecular orbital (FMO) method which can provide the set of interaction energies among segments as polymer units. Moreover, we evaluated the anisotropy of molecules by using the FMO-based effective interaction parameters for three standard binary mixture systems (hexane-nitrobenzene, polyisobutylene-diisobutyl ketone, and polyisoprene-polystyrene). The calculated values showed good agreement with the experimental values with about 10% errors.
RSC Advances | 2018
Koji Okuwaki; Yuji Mochizuki; Hideo Doi; Shutaro Kawada; Taku Ozawa; Kenji Yasuoka
The mesoscopic structures of polymer electrolyte membrane (PEM) affect the performances of fuel cells. Nafion® with the Teflon® backbone has been the most widely used of all PEMs, but sulfonated poly-ether ether-ketone (SPEEK) having an aromatic backbone has drawn interest as an alternative to Nafion. In the present study, a series of dissipative particle dynamics (DPD) simulations were performed to compare Nafion and SPEEK. These PEM polymers were modeled by connected particles corresponding to the hydrophobic backbone and the hydrophilic moiety of sulfonic acid group. The water particle interacting with Nafion particles was prepared as well. The crucial interaction parameters among DPD particles were evaluated by a series of calculations based on the fragment molecular orbital (FMO) method in a non-empirical way (Okuwaki et al., J. Phys. Chem. B, 2018, 122, 338–347). Through the DPD simulations, the water and hydrophilic particles aggregated, forming cluster networks surrounded by the hydrophobic phase. The structural features of formed water clusters were investigated in detail. Furthermore, the differences in percolation behaviors between Nafion and SPEEK revealed much better connectivity among water clusters by Nafion. The present FMO-DPD simulation results were in good agreement with available experimental data.
Journal of Computer Chemistry, Japan | 2017
Hideo Doi; Koji Okuwaki; Yuji Mochizuki; Taku Ozawa
Chemical Physics Letters | 2017
Hideo Doi; Koji Okuwaki; Yuji Mochizuki; Taku Ozawa; Kenji Yasuoka
Journal of Computer Chemistry, Japan | 2018
Eiji Shinsho; Koji Okuwaki; Hideo Doi; Yuji Mochizuki; Takayuki Furuishi; Kaori Fukuzawa; Etsuo Yonemochi
The Japan Society of Applied Physics | 2018
Koji Okuwaki; Hideo Doi; Yuji Mochizuki; Taku Ozawa; Kenji Yasuoka; Kaori Fukuzawa
Journal of Computer Chemistry, Japan | 2018
Koji Okuwaki; Hideo Doi; Yuji Mochizuki; Taku Ozawa; Kenji Yasuoka; Kaori Fukuzawa
Journal of Computer Chemistry, Japan | 2018
Hideo Doi; Sona Saitou; Koji Okuwaki; Takamitsu Naito; Yuji Mochizuki
Chem-bio Informatics Journal | 2018
Sona Saitou; Jun Iijima; Mayu Fujimoto; Yuji Mochizuki; Koji Okuwaki; Hideo Doi; Yuto Komeiji
The Japan Society of Applied Physics | 2017
Koji Okuwaki; Hideo Doi; Yutaro Ishikawa; Yuji Mochizuki; Taku Ozawa; Kenji Yasuoka