Cao Dapeng, Wu Jianzhong
Department of Chemical and Environmental Engineering, University of California, Riverside, California 92521, USA.
J Chem Phys. 2004 Sep 1;121(9):4210-20. doi: 10.1063/1.1774983.
The effects of bond angle and chain stiffness on the structures of semiflexible polyatomic fluids are investigated by incorporating the bending potential into a density functional theory [Y. X. Yu and J. Z. Wu, J. Chem. Phys. 117, 2368 (2002)] that combines a modified fundamental measure theory for the excluded-volume effects and the first-order thermodynamics perturbation theory for the chain connectivity. The refined density functional theory faithfully reproduces the density profiles and conformational properties of a variety of triatomic fluids near a hard wall in which extensive Monte Carlo simulation data are available. In particular, the theory is able to capture the structures of rigid cyclic trimers where all segments are identical. The variation of local density profiles with respect to the chain length of confined polyatomic fluids is also explored. For quadratomic fluids confined in slit pores, the density profile of the middle segments exhibits novel double peaks that are absent in a fully flexible chain model. In addition, the density functional theory is applied to predicting the conformational properties and adsorption behavior of heterogeneous triatomic fluids of type "ABB" mimicking surfactant molecules. The competition between surface adsorption and self-association of trimers consisting of surface active and self-binding "A" segments and neutral "B" segment is explored.
通过将弯曲势纳入一种密度泛函理论[Y. X. Yu和J. Z. Wu, J. Chem. Phys. 117, 2368 (2002)],研究键角和链刚度对半柔性多原子流体结构的影响,该密度泛函理论结合了用于排除体积效应的修正基本度量理论和用于链连接性的一阶热力学微扰理论。改进后的密度泛函理论如实地再现了各种三原子流体在硬壁附近的密度分布和构象性质,对此有大量的蒙特卡罗模拟数据。特别地,该理论能够捕捉所有链段都相同的刚性环状三聚体的结构。还探讨了受限多原子流体的局部密度分布随链长的变化情况。对于限制在狭缝孔中的四原子流体,中间链段的密度分布呈现出新颖的双峰,这在完全柔性链模型中是不存在的。此外,密度泛函理论被应用于预测模拟表面活性剂分子的“A BB”型非均相三原子流体的构象性质和吸附行为。探讨了由表面活性和自结合的“A”链段以及中性“B”链段组成的三聚体在表面吸附和自缔合之间的竞争。