论文标题

核量子效应在氢键分子链中的重要性

Significance of nuclear quantum effects in hydrogen bonded molecular chains

论文作者

Cahlík, Aleš, Hellerstedt, Jack, Mendieta-Moreno, Jesús I., Švec, Martin, Santhini, Vijai M., Pascal, Simon, Soler-Polo, Diego, Erlingsson, Sigurdur I., Výborný, Karel, Mutombo, Pingo, Marsalek, Ondrej, Siri, Olivier, Jelínek, Pavel

论文摘要

在氢键系统中,核量子效应(例如零点运动和隧穿)可以通过潜在的物理和化学过程显着影响其材料特性。目前,直接观察核量子对氢键强度产生的结构和电子含义的强度的影响仍然难以捉摸,这留下了更深入理解的机会,以利用其迷人的特性。我们研究了氢键的一维奎因二胺分子网络,这些奎诺明分子网络可以通过质子转移采用两种异构电子构型。在此,我们证明了协同的质子转移促进了沿分子链的π电子的定位,从而增强了分子单元之间的凝聚力,从而提高了链的机械稳定性,并引起了局部局部末端的新电子内部差异状态。这些发现证明了一类新的异构氢键分子系统的鉴定,其中核量子效应在建立其化学和物理特性中起主要作用。我们预计,这项工作将通过协同的质子隧道为控制低维分子材料的机械和电子特性的新研究方向开辟新的研究方向。

In hydrogen bonded systems, nuclear quantum effects such as zero-point motion and tunneling can significantly affect their material properties through underlying physical and chemical processes. Presently, direct observation of the influence of nuclear quantum effects on the strength of hydrogen bonds with resulting structural and electronic implications remains elusive, leaving opportunities for deeper understanding to harness their fascinating properties. We studied hydrogen-bonded one-dimensional quinonediimine molecular networks which may adopt two isomeric electronic configurations via proton transfer. Herein, we demonstrate that concerted proton transfer promotes a delocalization of π-electrons along the molecular chain, which enhances the cohesive energy between molecular units, increasing the mechanical stability of the chain and giving rise to new electronic in-gap states localized at the ends. These findings demonstrate the identification of a new class of isomeric hydrogen bonded molecular systems where nuclear quantum effects play a dominant role in establishing their chemical and physical properties. We anticipate that this work will open new research directions towards the control of mechanical and electronic properties of low-dimensional molecular materials via concerted proton tunneling.

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