Raveendran Asha, Chandran Mijun, Dhanusuraman Ragupathy
Nano Electrochemistry Lab (NEL), Department of Chemistry, National Institute of Technology Puducherry Karaikal - 609609 India
Department of Chemistry, Central University of Tamil Nadu Thiruvarur - 610005 India.
RSC Adv. 2023 Jan 26;13(6):3843-3876. doi: 10.1039/d2ra07642j. eCollection 2023 Jan 24.
Electrochemical splitting of water is an appealing solution for energy storage and conversion to overcome the reliance on depleting fossil fuel reserves and prevent severe deterioration of the global climate. Though there are several fuel cells, hydrogen (H) and oxygen (O) fuel cells have zero carbon emissions, and water is the only by-product. Countless researchers worldwide are working on the fundamentals, the parameters affecting the electrocatalysis of water splitting and electrocatalysts that could improve the performance of the hydrogen evolution reaction (HER) and oxygen evolution reaction (OER) and overall simplify the water electrolysis process. Noble metals like platinum for HER and ruthenium and iridium for OER were used earlier; however, being expensive, there are more feasible options than employing these metals for all commercialization. The review discusses the recent developments in metal and metalloid HER and OER electrocatalysts from the s, p and d block elements. The evaluation perspectives for electrocatalysts of electrochemical water splitting are also highlighted.
电化学水分解是一种极具吸引力的储能和能量转换解决方案,有助于克服对日益枯竭的化石燃料储备的依赖,并防止全球气候严重恶化。虽然有几种燃料电池,但氢(H)燃料电池和氧(O)燃料电池的碳排放为零,且水是唯一的副产物。全球无数研究人员正在研究其基本原理、影响水分解电催化作用的参数以及能够改善析氢反应(HER)和析氧反应(OER)性能并全面简化水电解过程的电催化剂。早期使用铂等贵金属进行析氢反应,钌和铱进行析氧反应;然而,由于成本高昂,在所有商业化应用中,有比使用这些金属更可行的选择。本文综述讨论了来自s、p和d区元素的金属和类金属析氢反应和析氧反应电催化剂的最新进展。同时还强调了电化学水分解电催化剂的评估视角。