用于化学、光子学和量子技术的分子极化子

IF 55.8 1区 化学 Q1 CHEMISTRY, MULTIDISCIPLINARY
Bo Xiang,  and , Wei Xiong*, 
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引用次数: 0

摘要

分子极化子是分子和光子模式杂化产生的准粒子。这些复合实体继承了两种成分的特性,表现出改良的能级和波函数,因此在过去十年中吸引了化学家的注意。改变化学反应的潜力激发了许多研究,同时也促进了为光子和量子应用增强和操纵光学响应的努力。本综述主要介绍这一新兴领域的实验进展。首先介绍基本原理,包括理论基础和各种腔体结构,然后讨论极化子修饰化学反应的结果。此外,我们还探讨了围绕这种控制化学反应的创新方法的基本机理正在进行的争论和不确定性。重点是全面了解分子极化子的能量动力学,特别是振动分子极化子--引导化学反应的一个关键方面。此外,我们还讨论了相干二维光谱在剖析极化子和暗模式动力学方面的独特能力,从而深入了解改变化学反应的空腔内的关键成分。我们进一步探讨了分子极化子在量子应用中的潜在用途,以及分子和光子极化的精确操纵,特别是在手性现象的背景下。本次讨论旨在激发人们对揭示极化子修饰分子特性的物理学基础的更深好奇心和参与度,以及对利用光子环境控制化学的广泛兴趣。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Molecular Polaritons for Chemistry, Photonics and Quantum Technologies

Molecular Polaritons for Chemistry, Photonics and Quantum Technologies

Molecular Polaritons for Chemistry, Photonics and Quantum Technologies

Molecular polaritons are quasiparticles resulting from the hybridization between molecular and photonic modes. These composite entities, bearing characteristics inherited from both constituents, exhibit modified energy levels and wave functions, thereby capturing the attention of chemists in the past decade. The potential to modify chemical reactions has spurred many investigations, alongside efforts to enhance and manipulate optical responses for photonic and quantum applications. This Review centers on the experimental advances in this burgeoning field. Commencing with an introduction of the fundamentals, including theoretical foundations and various cavity architectures, we discuss outcomes of polariton-modified chemical reactions. Furthermore, we navigate through the ongoing debates and uncertainties surrounding the underpinning mechanism of this innovative method of controlling chemistry. Emphasis is placed on gaining a comprehensive understanding of the energy dynamics of molecular polaritons, in particular, vibrational molecular polaritons─a pivotal facet in steering chemical reactions. Additionally, we discuss the unique capability of coherent two-dimensional spectroscopy to dissect polariton and dark mode dynamics, offering insights into the critical components within the cavity that alter chemical reactions. We further expand to the potential utility of molecular polaritons in quantum applications as well as precise manipulation of molecular and photonic polarizations, notably in the context of chiral phenomena. This discussion aspires to ignite deeper curiosity and engagement in revealing the physics underpinning polariton-modified molecular properties, and a broad fascination with harnessing photonic environments to control chemistry.

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来源期刊
Chemical Reviews
Chemical Reviews 化学-化学综合
CiteScore
106.00
自引率
1.10%
发文量
278
审稿时长
4.3 months
期刊介绍: Chemical Reviews is a highly regarded and highest-ranked journal covering the general topic of chemistry. Its mission is to provide comprehensive, authoritative, critical, and readable reviews of important recent research in organic, inorganic, physical, analytical, theoretical, and biological chemistry. Since 1985, Chemical Reviews has also published periodic thematic issues that focus on a single theme or direction of emerging research.
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