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等离子体辅助CO光还原的基础与应用进展

Advances in fundamentals and application of plasmon-assisted CO photoreduction.

作者信息

Fusco Zelio, Beck Fiona J

机构信息

School of Engineering, College of Engineering and Computer Science, Australian National University, Canberra, ACT 2601, Australia.

出版信息

Nanophotonics. 2024 Feb 1;13(4):387-417. doi: 10.1515/nanoph-2023-0793. eCollection 2024 Feb.

Abstract

Artificial photosynthesis of hydrocarbons from carbon dioxide (CO) has the potential to provide renewable fuels at the scale needed to meet global decarbonization targets. However, CO is a notoriously inert molecule and converting it to energy dense hydrocarbons is a complex, multistep process, which can proceed through several intermediates. Recently, the ability of plasmonic nanoparticles to steer the reaction down specific pathways and enhance both reaction rate and selectivity has garnered significant attention due to its potential for sustainable energy production and environmental mitigation. The plasmonic excitation of strong and confined optical near-fields, energetic hot carriers and localized heating can be harnessed to control or enhance chemical reaction pathways. However, despite many seminal contributions, the anticipated transformative impact of plasmonics in selective CO photocatalysis has yet to materialize in practical applications. This is due to the lack of a complete theoretical framework on the plasmonic action mechanisms, as well as the challenge of finding efficient materials with high scalability potential. In this review, we aim to provide a comprehensive and critical discussion on recent advancements in plasmon-enhanced CO photoreduction, highlighting emerging trends and challenges in this field. We delve into the fundamental principles of plasmonics, discussing the seminal works that led to ongoing debates on the reaction mechanism, and we introduce the most recent advances, which could help disentangle these effects. We then synthesize experimental advances and measurements on plasmon CO photoreduction before concluding with our perspective and outlook on the field of plasmon-enhanced photocatalysis.

摘要

利用二氧化碳(CO₂)人工合成碳氢化合物有潜力提供满足全球脱碳目标所需规模的可再生燃料。然而,CO₂是一种出了名的惰性分子,将其转化为能量密集型碳氢化合物是一个复杂的多步骤过程,该过程可能通过几种中间体进行。最近,等离子体纳米颗粒引导反应沿着特定路径进行并提高反应速率和选择性的能力因其在可持续能源生产和环境缓解方面的潜力而备受关注。强而受限的光学近场、高能热载流子和局部加热的等离子体激发可用于控制或增强化学反应路径。然而,尽管有许多开创性的贡献,但等离子体在选择性CO₂光催化中预期的变革性影响尚未在实际应用中实现。这是由于缺乏关于等离子体作用机制的完整理论框架,以及寻找具有高可扩展性潜力的高效材料的挑战。在这篇综述中,我们旨在对等离子体增强CO₂光还原的最新进展进行全面而批判性的讨论,突出该领域的新趋势和挑战。我们深入探讨等离子体学的基本原理,讨论引发关于反应机制持续争论的开创性工作,并介绍最新进展,这些进展可能有助于理清这些效应。然后,我们综合了等离子体CO₂光还原的实验进展和测量结果,最后对等离子体增强光催化领域给出我们的观点和展望。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8ab9/11501834/1c1d586c1210/j_nanoph-2023-0793_scheme_001.jpg

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