等离子体增强光/电催化:利用异质纳米结构实现可持续能源和环境应用

IF 11.9 1区 物理与天体物理 Q1 PHYSICS, APPLIED Applied physics reviews Pub Date : 2024-12-24 DOI:10.1063/5.0205461
Lemma Teshome Tufa, Birhanu Bayissa Gicha, Cheru Fekadu Molla, Huu-Quang Nguyen, Van Tan Tran, Njemuwa Nwaji, Xiaojun Hu, Hongxia Chen, Jaebeom Lee
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引用次数: 0

摘要

利用异纳米结构的等离子体增强光/电催化已成为提高光/电催化反应效率和选择性的一种有前途的方法。等离子体纳米结构(PNSs)以其独特的特性,包括局部表面等离子体共振(LSPR),在提高光/电催化活性方面起着至关重要的作用。通过利用LSPR, PNSs可以集中入射光,促进电荷分离,诱导表面反应,从而提高催化性能。在这篇综述中,我们对这一领域的知识现状进行了全面的分析。我们讨论了异质纳米结构的合理设计和合成,重点是组成、尺寸、形状和界面性能的优化。此外,我们探索了等离子体源与不同形态半导体的各种组合,以实现增强的光催化活性。综述的研究包括在水分解、去除有机污染物、二氧化碳减排和能量转换方面的应用。我们还解决了需要克服的挑战,包括材料的优化,再现性,稳定性,带对准,以及理解异质纳米结构中的等离子体-材料相互作用。展望了等离子体增强光/电催化的未来前景,包括多种功能的集成、新型等离子体材料的探索以及等离子体增强光/电催化的实际应用。等离子体和纳米技术的结合可以用来推进绿色技术和解决紧迫的全球问题。
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Plasmon-enhanced photo/electrocatalysis: Harnessing hetero-nanostructures for sustainable energy and environmental applications
Plasmon-enhanced photo/electrocatalysis using hetero-nanostructures has emerged as a promising approach for boosting the efficiency and selectivity of photo/electrocatalytic reactions. Plasmonic nanostructures (PNSs), with their unique properties including localized surface plasmon resonance (LSPR), play a vital role in enhancing photo/electrocatalytic activities. By leveraging LSPR, PNSs can concentrate incident light, facilitate charge separation, and induce surface reactions, leading to improved catalytic performance. In this review, we provide a comprehensive analysis of the current state of knowledge in this field. We discuss the rational design and synthesis of hetero-nanostructures, focusing on the optimization of composition, size, shape, and interface properties. Furthermore, we explore various combinations of plasmonic sources with semiconductors of diverse morphologies to achieve enhanced photocatalytic activity. The reviewed research encompasses applications in water splitting, removal of organic pollutants, CO2 reduction, and energy conversion. We also address the challenges that need to be overcome, including optimization of materials, reproducibility, stability, band alignment, and understanding plasmon–material interactions in hetero-nanostructures. The review of future perspectives includes the integration of multiple functionalities, the exploration of novel plasmonic materials, and the translation of plasmon-enhanced photo/electrocatalysis into practical applications. The combination of plasmonics and nanotechnology can be used to advance green technologies and address pressing global issues.
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来源期刊
Applied physics reviews
Applied physics reviews PHYSICS, APPLIED-
CiteScore
22.50
自引率
2.00%
发文量
113
审稿时长
2 months
期刊介绍: Applied Physics Reviews (APR) is a journal featuring articles on critical topics in experimental or theoretical research in applied physics and applications of physics to other scientific and engineering branches. The publication includes two main types of articles: Original Research: These articles report on high-quality, novel research studies that are of significant interest to the applied physics community. Reviews: Review articles in APR can either be authoritative and comprehensive assessments of established areas of applied physics or short, timely reviews of recent advances in established fields or emerging areas of applied physics.
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