Maiti Sourav, Maheswar Kothapalli Gnana, Nagarajan Kalaivanan
Department of Chemical Sciences, Tata Institute of Fundamental Research (TIFR), Homi Bhabha Road, Mumbai, 400005, India.
Chempluschem. 2025 Feb;90(2):e202400591. doi: 10.1002/cplu.202400591. Epub 2024 Nov 22.
Light-matter strong coupling, especially Vibrational Strong Coupling (VSC), has become a significant research focus due to its potential to alter materials' inherent physical and chemical properties. Remarkably, VSC operates even in the absence of light, harnessing subtle quantum fluctuations to influence material characteristics. Vibro-polaritonic states, which are half photonic and half material, are introduced in the molecular/material energy ladder under VSC conditions. Although the underlying mechanism remains elusive, it is proposed that these hybrid states may modify chemical reactivity and other properties by altering factors such as polarity, polarizability, and Van der Waals interactions. This evolving field, vibro-polaritonic chemistry, holds vast potential for deeper exploration, particularly within molecular sciences. This Review examines VSC's observed effects on non-bonding interactions, including hydrogen bonding and π-π interactions, typically governed by dispersive forces.
光与物质的强耦合,尤其是振动强耦合(VSC),因其具有改变材料固有物理和化学性质的潜力,已成为一个重要的研究焦点。值得注意的是,即使在没有光的情况下,VSC也能发挥作用,利用微妙的量子涨落来影响材料特性。在VSC条件下,分子/材料的能量阶梯中引入了半光子半物质的振转极化激元态。尽管其潜在机制仍不清楚,但有人提出,这些混合态可能通过改变极性、极化率和范德华相互作用等因素来改变化学反应性和其他性质。这个不断发展的领域,即振转极化激元化学,具有巨大的深入探索潜力,特别是在分子科学领域。本综述考察了VSC对非键相互作用(包括通常由色散力控制的氢键和π-π相互作用)的观察到的影响。