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首页> 外文期刊>Physical chemistry chemical physics: PCCP >The structures of liquid pyridine and naphthalene: the effects of heteroatoms and core size on aromatic interactions
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The structures of liquid pyridine and naphthalene: the effects of heteroatoms and core size on aromatic interactions

机译:液体吡啶和萘的结构:杂原子和核心大小对芳族相互作用的影响

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摘要

Total neutron scattering has been used in conjunction with H/D and *N/N-15 isotopic substitution to determine the detailed liquid-state structures of pyridine and naphthalene. Analysis of the data via an empirical potential-based structure refinement method has allowed us to interrogate the full six-dimensional spatial and orientational correlation surfaces in these systems, and thereby to deduce the fundamental effects of a heteroatom and aromatic core-size on intermolecular pi-pi interactions. We find that the presence of a nitrogen heteroatom, and concomitant dipole moment, in pyridine induces surprisingly subtle departures from the structural correlations observed in liquid benzene: in both cases the most probable local motif is based on perpendicular (edge-to-face) intermolecular contacts, while parallel-displaced configurations give rise to a clear shoulder in the correlation surface. However, the effect of the heteroatom is revealed through detailed analysis of the intermolecular orientational correlations. This analysis shows a tendency for neighbouring pyridine molecules to direct one meta-and one para-hydrogen towards the neighbouring aromatic pi-orbitals in edge-to-face configurations, while head-to-tail alignment of adjacent nitrogen atoms is favoured in face-to-face configurations. In contrast to this, increasing aromatic core size from one to only two rings has a clear and profound effect on the pi-pi interactions and liquid structure. Our experiments show that naphthalenenaphthalene contacts are dominated by parallel-displaced configurations, akin to those found in graphite. This marks a fundamental difference with the structure of liquid benzene, in which perpendicular geometries are favoured. Furthermore, it is remarkable to note that in the systems studied, the most favoured spatioorientational configurations observed in the liquid state are not predicted from ab initio calculations and/or solid state crystallographic studies. This highlights the need for caution when extrapolating the results of crystallographic and computational studies to aromatic interactions in liquids and disordered systems.
机译:总中子散射已经与H / D和* N / N-15同位素取代一起使用,以确定吡啶和萘的详细液态结构。通过经验基于潜在的结构细化方法分析数据,使我们能够在这些系统中询问完整的六维空间和取向相关表面,从而推测杂原子和芳族核心大小对分子间PI的基本效果-PI互动。我们发现氮杂原子和伴随的偶极矩,在吡啶中的存在诱人的微妙偏离在液态苯中观察到的结构相关性:在这两种情况下,最可能的局部图案基于垂直(边缘面)分子触点,而平行移位的配置在相关表面中产生透明肩部。然而,通过对分子间取向相关性的详细分析揭示了杂原子的效果。该分析表明,相邻的吡啶分子在边缘构造中将吡啶分子与相邻的芳族PI-轨道指向相邻的芳族PI-轨道的趋势,而相邻氮原子的头部对准是面部的青睐 - 面对配置。与此相反,从一个到两个环的芳香芯尺寸增加对PI-PI相互作用和液体结构具有明显的深刻影响。我们的实验表明,萘萘萘邻接是通过平行移位的构型支配,类似于石墨中​​的那些。这标志着液体苯的结构的根本差异,其中垂直几何形状受到青睐。此外,值得注意的是,在所研究的系统中,在AB初始计算和/或固态晶体研究中,不预测在液态中观察到的最有利的吐满特性配置。这突出了在将晶体和无序系统中的芳族相互作用外推外推断结晶和计算研究的结果时注意的需要。

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