Recent advances on hydrogen generation based on inorganic metal oxide nano-catalyst using water electrolysis approach

化学 电解 催化作用 电解水 分解水 氧化物 贵金属 化石燃料 制氢 化学工程 工艺工程 纳米技术 光催化 有机化学 电极 物理化学 材料科学 工程类 电解质
作者
Muhammad Naeem Ayub,Muhammad Fazle Rabbee,Umer Shahzad,Mohsin Saeed,Saad M. Al‐Baqami,Khalid A. Alzahrani,Md. Reazuddin Repon,Md. Rezaur Rahman,Mohammad Mizanur Rahman Khan,Mohammed M. Rahman
出处
期刊:Reviews in Inorganic Chemistry [De Gruyter]
卷期号:45 (1): 77-104 被引量:1
标识
DOI:10.1515/revic-2024-0026
摘要

Abstract Today world is looking for a cheap, environment friendly and efficient substitute of fossil fuel. Because due to large consumption of the fossil fuels on daily basis in whole world, emission of hazardous gases have produced lethal effects on human being. In this scenario hydrogen energy has emerged in form of clean, renewable and more efficient energy. Now the key challenge is that efficient production of the green hydrogen at commercial scale to meet demand of hydrogen. The electrolysis of water is the best pathway to achieve efficient hydrogen production. For this purpose the synthesis and improvement of low cast, active as well as stable catalysts or electrolysis is prerequisite for hydrogen production by electro-catalytic method for splitting of water. Main focus of this review is that, how we can perform the electrolysis of water by various techniques using novel methods especially electro-catalysts in term of activity, efficiency, large surface area, porosity, and stability. This will be performed by the method of two-half cell reaction one is the Hydrogen Evolution Reaction (HER) other one Oxygen Evolution Reaction (OER), where reaction proceeded in both medium acidic as well as alkaline phases. Particular attention is given to produce green clean hydrogen production from usable water and its physical and chemical storages for further uses for the support of human sustainability. Basically the recent strategy is to prepare, design and development of nanoscale materials/composite with non-noble metals and with also nanostructured with noble-metals will be discussed in this approach. The increased efficiency and utility have been the focal points of the use of diverse materials from different classes. To increase the electro-catalytic efficiency in OER and HER, we will discuss about new analyses methods and insights into studying the chemical compositions, shapes, surface area, porosity, and synergy of catalysts and the active sites of nanostructured electro-catalysts. This review will further provide the picture of current state of developments as well as recent progress for mechanized efficient production of clean hydrogen (i.e., HER) from water by electrocatalytic method using various nanoscale materials in a broad scale.
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