Karuppasamy K, Nichelson A, Vikraman Dhanasekaran, Choi Jun-Hyeok, Hussain Sajjad, Ambika C, Bose Ranjith, Alfantazi Akram, Kim Hyun-Seok
Division of Electronics and Electrical Engineering, Dongguk University-Seoul, Seoul 04620, Korea.
Department of Physics, National Engineering College, K.R. Nagar, Kovilpatti, Tuticorin 628503, Tamil Nadu, India.
Nanomaterials (Basel). 2022 Nov 3;12(21):3884. doi: 10.3390/nano12213884.
Green and renewable energy is the key to overcoming energy-related challenges such as fossil-fuel depletion and the worsening of environmental habituation. Among the different clean energy sources, hydrogen is considered the most impactful energy carrier and is touted as an alternate fuel for clean energy needs. Even though noble metal catalysts such as Pt, Pd, and Au exhibit excellent hydrogen evolution reaction (HER) activity in acid media, their earth abundance and capital costs are highly debatable. Hence, developing cost-effective, earth-abundant, and conductive electrocatalysts is crucial. In particular, various two-dimensional (2D) transition metal carbides and their compounds are gradually emerging as potential alternatives to noble metal-based catalysts. Owing to their improved hydrophilicity, good conductivity, and large surface areas, these 2D materials show superior stability and excellent catalytic performances during the HER process. This review article is a compilation of the different synthetic protocols, their impact, effects of doping on molybdenum and tungsten carbides and their derivatives, and their application in the HER process. The paper is more focused on the detailed strategies for improving the HER activity, highlights the limits of molybdenum and tungsten carbide-based electrocatalysts in electro-catalytic process, and elaborates on the future advancements expected in this field.
绿色和可再生能源是克服与能源相关挑战(如化石燃料枯竭和环境适应性恶化)的关键。在不同的清洁能源中,氢被认为是最具影响力的能量载体,并被誉为满足清洁能源需求的替代燃料。尽管诸如Pt、Pd和Au等贵金属催化剂在酸性介质中表现出优异的析氢反应(HER)活性,但其在地壳中的丰度和成本备受争议。因此,开发具有成本效益、地壳丰富且导电的电催化剂至关重要。特别是,各种二维(2D)过渡金属碳化物及其化合物正逐渐成为基于贵金属催化剂的潜在替代品。由于其亲水性增强、导电性良好和表面积大,这些二维材料在HER过程中表现出卓越的稳定性和优异的催化性能。这篇综述文章汇编了不同的合成方法、它们的影响、掺杂对碳化钼和碳化钨及其衍生物的作用,以及它们在HER过程中的应用。本文更侧重于提高HER活性的详细策略,突出了基于碳化钼和碳化钨的电催化剂在电催化过程中的局限性,并阐述了该领域预期的未来进展。