硼罗芬的生产方法及能源应用

Halil Eki̇ci̇
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引用次数: 0

摘要

二维材料具有独特的物理、化学和电学性质。许多关于硼罗芬的理论研究揭示了它可能具有的重要性质,如金属丰度、透明度、导电性和化学活性;由于其结构中存在空缺。它于2015年首次合成,对这种令人兴奋的新型二维材料的实验研究数量很少。人们发现,这些研究大多集中在昂贵而复杂的生产方法上,如分子束外延(MBE)和化学气相沉积(CVD)。虽然石墨烯作为第一个二维材料,已经被研究了二十多年,但由于缺乏工业规模的生产方法,它无法对能源产业产生预期的影响。在这篇综述中,它的目的是建立一个叙述的实验生产方法和最终结构的硼罗芬,而不是理论背景。结果表明,液相剥脱法合成硼罗芬片料可能是提高硼罗芬产量的最有前途的方法。理论、计算和实验研究表明,β12和χ3硼罗芬结构稳定,可通过声化学剥离法制备。此外,还讨论了其在能源应用中的可能用途和未来的一些前景。以这种方式生产的硼罗芬可用于电池、超级电容器的析氢(HER)和析氧(OER)反应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Production Methods and Energy Applications of Borophene
Two dimensional materials have unique physical, chemical and electrical properties. Many theoretical studies on borophene revealed important possible properties, such as metallicity, transparency, conductivity and chemical activity; due to vacancies present in its structure. It was first synthesized in 2015 and experimental studies on this new exciting 2D material is few in number. It was found that many of these studies still focus on expensive and sophisticated production methods such as Molecular Beam Epitaxy (MBE) and Chemical Vapor Deposition (CVD). Although graphene, first of these 2D materials, is being studied more than two decades, it could not do the expected impact on energy industry due to lack of production methods in industrial scale. In this review, it was intended to build a narrative on the experimental production methods and resulting structures of borophene rather than theoretical background. It was found that liquid phase exfoliation method to synthesize borophene sheets might be the most promising method to upscale borophene production. Theoretical, computational and experimental studies suggested that β12 and χ3 borophene structures were stable and could be produced by sonochemical exfoliation method. In addition, possible uses in energy applications and some future prospects were also discussed. Borophene produced this way, might be used in batteries, supercapacitors hydrogen evolution (HER) and oxygen evolution (OER) reactions.
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