An overview of recent advances in Pt and Pd-based materials: From design strategies to reaction mechanisms

IF 5.9 3区 工程技术 Q1 CHEMISTRY, MULTIDISCIPLINARY
Nithyadharseni Palaniyandy , Durai Govindarajan , Lakshmi Devaraj , Ramin Khezri , Karthikkumar Chinnakutti , Sureshkumar Kempahanumakkagari , Ramakrishnappa Thippeswamy , Mabrook S. Amer , Prabhakarn Arunachalam , Abdullah M. Al-Mayouf , Soorathep Kheawhom
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Abstract

Due to the growing demand for energy and the threat of environmental problems, advanced energy storage and conversion technologies have attracted considerable attention as alternatives to conventional technologies. Platinum group metals (PGMs), especially platinum (Pt) and palladium (Pd)-based materials, have shown remarkable potential for storage and oxygen reduction reaction (ORR), and hydrogen evolution reaction (HER) due to their high catalytic activity, electrochemically active sites, surface area, permeability, charge transfer resistance, electrical conductivity, and corrosion resistance. However, the scarcity and high price of PGMs hinder their practical application in the commercial sector. Moreover, the availability of PGM electrodes/catalysts with high activity and stable electrochemical performance is critical for developing long-term and cost-effective energy storage/conversion technologies. Therefore, this review focuses on the recent advances in the synthesis strategies for single-atom, alloy-based, and composite Pt and Pd electrocatalysts, their structure-performance relationships, and applications in various energy sectors. The challenges of material stability, cost reduction, and the engineering of highly efficient catalysts, as well as future directions for enhancing their performance in conversion and energy storage technologies such as fuel-cells, metal-air batteries, supercapacitors, hydrogen storage and dye-sensitized solar cells are discussed.

Abstract Image

铂和钯基材料的最新进展综述:从设计策略到反应机制
由于能源需求的增长和环境问题的威胁,先进的能源储存和转换技术作为传统技术的替代品受到了广泛的关注。铂族金属(PGMs),特别是铂(Pt)和钯(Pd)基材料,由于其高催化活性、电化学活性位点、表面积、导电性、电荷转移电阻、导电性和耐腐蚀性,在存储和氧还原反应(ORR)和析氢反应(HER)中表现出了显著的潜力。然而,铂族金属的稀缺性和高价格阻碍了其在商业领域的实际应用。此外,具有高活性和稳定电化学性能的PGM电极/催化剂的可用性对于开发长期和经济高效的能量存储/转换技术至关重要。因此,本文综述了单原子、合金基和复合Pt和Pd电催化剂的合成策略、结构-性能关系及其在能源领域的应用进展。讨论了高效催化剂在燃料电池、金属-空气电池、超级电容器、储氢和染料敏化太阳能电池等转化和储能技术中的应用,包括材料稳定性、成本降低和高效催化剂的工程设计等方面的挑战,以及提高其性能的未来方向。
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来源期刊
CiteScore
10.40
自引率
6.60%
发文量
639
审稿时长
29 days
期刊介绍: Journal of Industrial and Engineering Chemistry is published monthly in English by the Korean Society of Industrial and Engineering Chemistry. JIEC brings together multidisciplinary interests in one journal and is to disseminate information on all aspects of research and development in industrial and engineering chemistry. Contributions in the form of research articles, short communications, notes and reviews are considered for publication. The editors welcome original contributions that have not been and are not to be published elsewhere. Instruction to authors and a manuscript submissions form are printed at the end of each issue. Bulk reprints of individual articles can be ordered. This publication is partially supported by Korea Research Foundation and the Korean Federation of Science and Technology Societies.
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