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蒄的全氯代反应增强了其在石墨烯上的自组装倾向。

Perchlorination of Coronene Enhances its Propensity for Self-Assembly on Graphene.

作者信息

Conti Simone, del Rosso Maria G, Ciesielski Artur, Weippert Jürgen, Böttcher Artur, Shin Yuyoung, Melinte Georgian, Ersen Ovidiu, Casiraghi Cinzia, Feng Xinliang, Müllen Klaus, Kappes Manfred M, Samorì Paolo, Cecchini Marco

机构信息

Laboratoire d'Ingénierie des Fonctions Moléculaires, ISIS & icFRC, Université de Strasbourg & CNRS, 8 allée Gaspard Monge, 67000, Strasbourg (France.

Nanochemistry Laboratory, ISIS & icFRC, Université de Strasbourg & CNRS, 8 allée Gaspard Monge, 67000, Strasbourg (France.

出版信息

Chemphyschem. 2016 Feb 3;17(3):352-7. doi: 10.1002/cphc.201501113. Epub 2015 Dec 23.

Abstract

Providing a quantitative understanding of the thermodynamics involved in molecular adsorption and self-assembly at a nanostructured carbon material is of fundamental importance and finds outstanding applications in the graphene era. Here, we study the effect of edge perchlorination of coronene, which is a prototypical polyaromatic hydrocarbon, on the binding affinity for the basal planes of graphite. First, by comparing the desorption barrier of hydrogenated versus perchlorinated coronene measured by temperature-programmed desorption, we quantify the enhancement of the strength of physisorption at the single-molecule level though chlorine substitution. Then, by a thermodynamic analysis of the corresponding monolayers based on force-field calculations and statistical mechanics, we show that perchlorination decreases the free energy of self-assembly, not only enthalpically (by enhancing the strength of surface binding), but also entropically (by decreasing the surface concentration). The functional advantage of a chemically modulated 2D self-assembly is demonstrated in the context of the molecule-assisted liquid-phase exfoliation of graphite into graphene.

摘要

对纳米结构碳材料上分子吸附和自组装过程中的热力学进行定量理解至关重要,且在石墨烯时代有着卓越的应用。在此,我们研究了典型的多环芳烃——蔻的边缘全氯代对其与石墨基面结合亲和力的影响。首先,通过比较程序升温脱附测得的氢化蔻与全氯代蔻的脱附势垒,我们在单分子水平上量化了通过氯取代增强的物理吸附强度。然后,基于力场计算和统计力学对相应单分子层进行热力学分析,我们表明全氯代不仅在焓方面(通过增强表面结合强度)降低了自组装的自由能,而且在熵方面(通过降低表面浓度)也降低了自组装的自由能。在石墨分子辅助液相剥离成石墨烯的背景下,展示了化学调制二维自组装的功能优势。

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