Li Can, Clament Sagaya Selvam N, Fang Jiye
Department of Chemistry, State University of New York at Binghamton, Binghamton, NY, USA.
Nanomicro Lett. 2023 Mar 31;15(1):83. doi: 10.1007/s40820-023-01060-2.
To achieve environmentally benign energy conversion with the carbon neutrality target via electrochemical reactions, the innovation of electrocatalysts plays a vital role in the enablement of renewable resources. Nowadays, Pt-based nanocrystals (NCs) have been identified as one class of the most promising candidates to efficiently catalyze both the half-reactions in hydrogen- and hydrocarbon-based fuel cells. Here, we thoroughly discuss the key achievement in developing shape-controlled Pt and Pt-based NCs, and their electrochemical applications in fuel cells. We begin with a mechanistic discussion on how the morphology can be precisely controlled in a colloidal system, followed by highlighting the advanced development of shape-controlled Pt, Pt-alloy, Pt-based core@shell NCs, Pt-based nanocages, and Pt-based intermetallic compounds. We then select some case studies on models of typical reactions (oxygen reduction reaction at the cathode and small molecular oxidation reaction at the anode) that are enhanced by the shape-controlled Pt-based nanocatalysts. Finally, we provide an outlook on the potential challenges of shape-controlled nanocatalysts and envision their perspective with suggestions.
为了通过电化学反应实现具有碳中和目标的环境友好型能量转换,电催化剂的创新在可再生资源的利用中起着至关重要的作用。如今,基于铂的纳米晶体(NCs)已被确定为一类最有前途的候选材料,可有效催化氢基和烃基燃料电池中的两个半反应。在此,我们全面讨论了在开发形状可控的铂和铂基纳米晶体及其在燃料电池中的电化学应用方面取得的关键成就。我们首先从机理上讨论如何在胶体体系中精确控制形态,随后重点介绍形状可控的铂、铂合金、铂基核壳纳米晶体、铂基纳米笼和铂基金属间化合物的先进发展情况。然后,我们选取一些案例研究,这些案例涉及典型反应(阴极的氧还原反应和阳极的小分子氧化反应)的模型,这些反应因形状可控的铂基纳米催化剂而得到增强。最后,我们对形状可控纳米催化剂的潜在挑战进行了展望,并对其前景提出了建议。