Alekseeva O K, Pushkareva I V, Pushkarev A S, Fateev V N
National Research Center Kurchatov Institute, Moscow, Russia.
Nanotechnol Russ. 2020;15(3):273-300. doi: 10.1134/S1995078020030027. Epub 2020 Dec 28.
The review is devoted to current and promising areas of application of graphene and materials based on it for generating environmentally friendly hydrogen energy. Analysis of the results of theoretical and experimental studies of hydrogen accumulation in graphene materials confirms the possibility of creating on their basis systems for reversible hydrogen storage, which combine high capacity, stability, and the possibility of rapid hydrogen evolution under conditions acceptable for practical use. Recent advances in the development of chemically and heat-resistant graphene-based membrane materials make it possible to create new gas separation membranes that provide high permeability and selectivity and are promising for hydrogen purification in processes of its production from natural gas. The characteristics of polymer membranes that are currently used in industry for the most part can be significantly improved with small additions of graphene materials. The use of graphene-like materials as a support of nanoparticles or as functional additives in the composition of the electrocatalytic layer in polymer electrolyte membrane fuel cells makes it possible to improve their characteristics and to increase the activity and stability of the electrocatalyst in the reaction of oxygen evolution.
这篇综述致力于石墨烯及其基材料在生成环境友好型氢能方面的当前和有前景的应用领域。对石墨烯材料中氢积累的理论和实验研究结果的分析证实了基于它们创建可逆储氢系统的可能性,该系统兼具高容量、稳定性以及在实际应用可接受条件下快速析氢的可能性。化学和耐热性石墨烯基膜材料开发的最新进展使得创建新的气体分离膜成为可能,这些膜具有高渗透性和选择性,在从天然气生产氢气的过程中用于氢气净化很有前景。目前工业上大部分使用的聚合物膜的特性通过少量添加石墨烯材料可得到显著改善。在聚合物电解质膜燃料电池的电催化层组成中,使用类石墨烯材料作为纳米颗粒的载体或功能添加剂,能够改善其特性并提高电催化剂在析氧反应中的活性和稳定性。