Kobayashi Yusei, Arai Noriyoshi
Kindai University 3-4-1 Kowakae Higashiosaka Osaka Japan
RSC Adv. 2018 May 22;8(33):18568-18575. doi: 10.1039/c8ra03187h. eCollection 2018 May 17.
The functionality of polymer electrolyte fuel cell membranes depends on the self-assembled structure of the graft polymer. To control self-assembly, nanoparticles (NPs) are often used as catalysts. Hence, we investigate the effect of hydrophilic (HI), hydrophobic (HO), and Janus nanoparticles (JNPs) for the self-assembly of graft polymers using dissipative particle dynamics (DPD) simulations. We found that the differences that appeared among the self-assembled structures of water depended on the concentration of PEFC. We also calculated the diffusion constant of water (D(HO)) from the slopes of the time-averaged mean square displacement (MSD) curves. HI NPs had the largest effect in suppressing the diffusion of water because the HI NPs incorporated into the water particles. It was also seen that D(HO) with various NPs gradually decreased as the number of NPs increased for three PEFC concentrations (70%, 80%, and 90%). Thus, a close correlation between the position and chemical composition of NPs in polymer electrolyte fuel cell (PEFC) membrane systems has been found. Moreover, the mean square radius of gyration 〈 〉 and the mean square end-to-end distance 〈〉 was calculated to analyse the self-assembled structures of PEFC. The 〈 〉 and 〈〉 increased as the concentration of PEFC was increased, with and without various NPs.
聚合物电解质燃料电池膜的功能取决于接枝聚合物的自组装结构。为了控制自组装,纳米颗粒(NPs)常被用作催化剂。因此,我们使用耗散粒子动力学(DPD)模拟研究了亲水性(HI)、疏水性(HO)和Janus纳米颗粒(JNPs)对接枝聚合物自组装的影响。我们发现,水的自组装结构中出现的差异取决于质子交换膜燃料电池(PEFC)的浓度。我们还根据时间平均均方位移(MSD)曲线的斜率计算了水的扩散常数(D(HO))。HI NPs对抑制水的扩散影响最大,因为HI NPs融入了水颗粒中。还可以看出,对于三种PEFC浓度(70%、80%和90%),随着NPs数量的增加,含有各种NPs的D(HO)逐渐降低。因此,已发现聚合物电解质燃料电池(PEFC)膜系统中NPs的位置与化学成分之间存在密切相关性。此外,计算了均方回转半径〈 〉和均方端到端距离〈〉,以分析PEFC的自组装结构。无论有无各种NPs,随着PEFC浓度的增加,〈 〉和〈〉均增大。