Prudente Frederico V, Marques Jorge M C
Instituto de Física, Universidade Federal da Bahia, Salvador 40170-115, BA, Brazil.
CQC-IMS, Department of Chemistry, University of Coimbra, 3004-535 Coimbra, Portugal.
Molecules. 2022 Apr 16;27(8):2581. doi: 10.3390/molecules27082581.
Computational simulation of colloidal systems make use of empirical interaction potentials that are founded in well-established theory. In this work, we have performed parallel tempering Monte Carlo (PTMC) simulations to calculate heat capacity and to assess structural transitions, which may occur in charged colloidal clusters whose effective interactions are described by a sum of pair potentials with attractive short-range and repulsive long-range components. Previous studies on these systems have shown that the global minimum structure varies from spherical-type shapes for small-size clusters to Bernal spiral and "beaded-necklace" shapes at intermediate and larger sizes, respectively. In order to study both structural transitions and dissociation, we have organized the structures appearing in the PTMC calculations by three sets according to their energy: (i) low-energy structures, including the global minimum; (ii) intermediate-energy "beaded-necklace" motifs; (iii) high-energy linear and branched structures that characterize the dissociative clusters. We observe that, depending on the cluster, either peaks or shoulders on the heat-capacity curve constitute thermodynamics signatures of dissociation and structural transitions. The dissociation occurs at T=0.20 for all studied clusters and it is characterized by the appearance of a significant number of linear structures, while the structural transitions corresponding to unrolling the Bernal spiral are quite dependent on the size of the colloidal system.
胶体系统的计算模拟利用了基于成熟理论的经验相互作用势。在这项工作中,我们进行了并行回火蒙特卡罗(PTMC)模拟,以计算热容并评估结构转变,这种转变可能发生在带电胶体簇中,其有效相互作用由具有吸引性短程和排斥性长程分量的对势之和来描述。此前对这些系统的研究表明,全局最小结构从小尺寸簇的球形形状分别变化到中等尺寸和大尺寸时的伯纳尔螺旋形和“串珠项链”形。为了研究结构转变和解离,我们根据能量将PTMC计算中出现的结构分为三组:(i)低能量结构,包括全局最小值;(ii)中等能量的“串珠项链”图案;(iii)表征解离簇的高能量线性和分支结构。我们观察到,根据簇的不同,热容曲线上的峰或肩构成了解离和结构转变的热力学特征。所有研究的簇在T = 0.20时发生解离,其特征是出现大量线性结构,而与展开伯纳尔螺旋相对应的结构转变相当依赖于胶体系统的尺寸。