Petelski Andre N, Peruchena Nelida M, Sosa Gladis L
Grupo UTN de Investigación en Química Teórica y Experimental (QUITEX), Departamento de Ingeniería Química, Facultad Regional Resistencia, Universidad Tecnológica Nacional, French 414, H3500CHJ, Resistencia, Chaco, Argentina.
Instituto de Química Básica y Aplicada del Nordeste Argentino (IQUIBA-NEA), Universidad Nacional del Nordeste-Consejo Nacional de Investigaciones Científicas y Técnicas, Avenida Libertad 5460, 3400, Corrientes, Argentina.
J Mol Model. 2016 Sep;22(9):202. doi: 10.1007/s00894-016-3070-5. Epub 2016 Aug 4.
The melamine (M)/cyanuric acid (CA) supramolecular system is perhaps one of the most exploited in the field of self-assembly because of the high complementarity of the components. However, it is necessary to investigate further the factors involved in the assembly process. In this study, we analyzed a set of 13 M n /CA m clusters (with n , m = 1, 2, 3), taken from crystallographic data, to characterize the nature of the hydrogen bonds involved in the self-assembly of these components as well as to provide greater understanding of the phenomenon. The calculations were performed at the B3LYP/6-311++G(d,p) and ω-B97XD (single point) levels of theory, and the interactions were analyzed within the framework of the quantum theory of atoms in molecules and by means of molecular electrostatic potential maps. Our results show that the stablest structure is the rosette-type motif and the aggregation mechanism is governed by a combination of cooperative and anticooperative effects. Our topological results explain the polymorphism in the self-assembly of coadsorbed monolayers of M and CA. Graphical abstract The aggregation steps of the melamine-cyanuric co-crystal is driven by a hydrogen-bonded network which is governed by a complex combination of cooperative and anticooperative effects.
三聚氰胺(M)/氰尿酸(CA)超分子体系或许是自组装领域中研究最多的体系之一,因为其组分具有高度互补性。然而,有必要进一步研究组装过程中涉及的因素。在本研究中,我们分析了一组13个Mₙ/CAₘ簇(n、m = 1、2、3),这些簇取自晶体学数据,以表征这些组分自组装过程中涉及的氢键性质,并加深对该现象的理解。计算在B3LYP/6 - 311++G(d,p)和ω - B97XD(单点)理论水平上进行,相互作用在分子中的原子量子理论框架内并借助分子静电势图进行分析。我们的结果表明,最稳定的结构是玫瑰花结型基序,聚集机制由协同效应和反协同效应共同控制。我们的拓扑学结果解释了M和CA共吸附单层自组装中的多态性。图形摘要 三聚氰胺 - 氰尿酸共晶体的聚集步骤由氢键网络驱动,该网络由协同效应和反协同效应的复杂组合控制。