Triolo Alessandro, Lo Celso Fabrizio, Fourmentin Sophie, Russina Olga
Laboratorio Liquidi Ionici, Istituto Struttura della Materia-Consiglio Nazionale delle Ricerche (ISM-CNR), Rome 00133, Italy.
Department of Physics and Chemistry, Università di Palermo, Palermo 90133, Italy.
ACS Sustain Chem Eng. 2023 Jun 2;11(24):9103-9110. doi: 10.1021/acssuschemeng.3c01858. eCollection 2023 Jun 19.
The concept of supramolecular solvents has been recently introduced, and the extended liquid-state window accessible for mixtures of functionalized cyclodextrins (CDs) with hydrogen bond (HB) donor species, e.g., levulinic acid, led to the debut of supramolecular deep eutectic solvents (SUPRA-DES). These solvents retain CD's inclusion ability and complement it with enhanced solvation effectiveness due to an extended HB network. However, so far, these promising features were not rationalized in terms of a microscopic description, thus hindering a more complete capitalization. This is the first joint experimental and computational study on the archetypal SUPRA-DES: heptakis(2,6-di--methyl)-β-CD/levulinic acid (1:27). We used X-ray scattering to probe CD's aggregation level and molecular dynamics simulation to determine the nature of interactions between SUPRA-DES components. We discover that CDs are homogeneously distributed in bulk and that HB interactions, together with the electrostatic ones, play a major role in determining mutual interaction between components. However, dispersive forces act in synergy with HB to accomplish a fundamental task in hindering hydrophobic interactions between neighbor CDs and maintaining the system homogeneity. The mechanism of mutual solvation of CD and levulinic acid is fully described, providing fundamental indications on how to extend the spectrum of SUPRA-DES combinations. Overall, this study provides the key to interpreting structural organization and solvation tunability in SUPRA-DES to extend the range of sustainable applications for these new, unique solvents.
超分子溶剂的概念最近才被提出,功能化环糊精(CDs)与氢键(HB)供体物种(如乙酰丙酸)混合物可获得的扩展液态窗口,促成了超分子低共熔溶剂(SUPRA-DES)的首次亮相。这些溶剂保留了CD的包合能力,并由于扩展的HB网络而增强了溶剂化效果。然而,到目前为止,这些有前景的特性尚未从微观描述的角度进行合理化解释,从而阻碍了更全面的利用。这是对典型SUPRA-DES:七(2,6-二甲基)-β-环糊精/乙酰丙酸(1:27)的首次联合实验和计算研究。我们使用X射线散射来探测CD的聚集水平,并通过分子动力学模拟来确定SUPRA-DES各组分之间相互作用的性质。我们发现CDs在本体中均匀分布,并且HB相互作用与静电相互作用一起,在决定各组分之间的相互作用中起主要作用。然而,色散力与HB协同作用,在阻碍相邻CDs之间的疏水相互作用和维持系统均匀性方面完成了一项基本任务。完整描述了CD与乙酰丙酸的相互溶剂化机制,为如何扩展SUPRA-DES组合的范围提供了基本指导。总体而言,本研究为解释SUPRA-DES中的结构组织和溶剂化可调性提供了关键,以扩展这些新型独特溶剂的可持续应用范围。