Wilson Mark, Sharma Bevan K
Department of Chemistry, Physical and Theoretical Chemistry Laboratory, University of Oxford, South Parks Road, Oxford OX1 3QZ, United Kingdom.
J Chem Phys. 2008 Jun 7;128(21):214507. doi: 10.1063/1.2931936.
The atomistic origin of the intermediate-range order (IRO) is investigated for an archetypal network-forming liquid. A pairwise additive potential model is chosen which is augmented with a description of the (many-body) anion polarization. The anion polarizability and system temperature are both systematically varied in order to control the network topology. The change in the IRO is monitored via the construction of Bhatia-Thornton structure factors which highlight the effect of chemical composition and network topology. The atomistic origin of the first-sharp diffraction peak in the concentration-concentration function, S(CC)(k), is discussed in terms of the connectivity of the polyhedral network. The atomistic origin of the IRO is discussed by reference to previous analyses.
针对一种典型的网络形成液体,研究了中程有序(IRO)的原子起源。选择了一个成对加和势模型,并通过对(多体)阴离子极化的描述进行了扩充。系统地改变阴离子极化率和系统温度,以控制网络拓扑结构。通过构建突出化学成分和网络拓扑结构影响的巴蒂亚 - 桑顿结构因子来监测IRO的变化。根据多面体网络的连通性,讨论了浓度 - 浓度函数S(CC)(k)中第一个尖锐衍射峰的原子起源。通过参考先前的分析讨论了IRO的原子起源。