Marshall Bennett D, Haghmoradi Amin, Chapman Walter G
Department of Chemical and Biomolecular Engineering, Rice University, 6100 S. Main, Houston, Texas 77005, USA.
J Chem Phys. 2014 Apr 28;140(16):164101. doi: 10.1063/1.4871307.
In this paper we develop a thermodynamic perturbation theory for two site associating fluids which exhibit bond cooperativity (system energy is non-pairwise additive). We include both steric hindrance and ring formation such that the equation of state is bond angle dependent. Here, the bond angle is the angle separating the centers of the two association sites. As a test, new Monte Carlo simulations are performed, and the theory is found to accurately predict the internal energy as well as the distribution of associated clusters as a function of bond angle.
在本文中,我们针对具有键协同性(体系能量是非成对加和的)的双位点缔合流体开发了一种热力学微扰理论。我们同时考虑了空间位阻和环的形成,使得状态方程依赖于键角。这里,键角是分隔两个缔合位点中心的角度。作为一项检验,我们进行了新的蒙特卡罗模拟,发现该理论能够准确预测内能以及缔合簇的分布随键角的变化情况。