Striolo Alberto, McCabe Clare, Cummings Peter T
School of Chemical Biological and Materials Engineering, University of Oklahoma, Norman, OK 73019, USA.
J Chem Phys. 2006 Sep 14;125(10):104904. doi: 10.1063/1.2348641.
We report molecular dynamics simulations for telechelic molecules composed of two polyhedral oligomeric silsesquioxane (POSS) cages connected by one hydrocarbon backbone dissolved in liquid normal hexane. Silsesquioxanes are novel hybrid organic-inorganic molecules that are useful as building blocks for the synthesis of nanostructured materials. By including POSS molecules within a polymeric material it is possible to modify mechanical properties such as resistance to heat and glass transition temperatures. Unfortunately, the molecular mechanisms responsible for these enhancements are at present not completely understood. In an effort to elucidate the molecular phenomena responsible for these effects, we have studied the conformation of telechelic POSS molecules in solution, as well as their self-diffusion coefficients, as a function of the length of the hydrocarbon backbone. We focus on molecules in which the radius of gyration of the alkane backbone is comparable to the size of the silsesquioxane cages. Our results indicate that the backbone has a significant influence on both the equilibrium and the transport properties of dissolved telechelic hybrid molecules. These observations are useful for developing strategies to direct the self-assembly of nanostructured materials.
我们报告了对由一个碳氢化合物主链连接的两个多面体低聚倍半硅氧烷(POSS)笼组成的遥爪分子进行的分子动力学模拟,这些分子溶解在液态正己烷中。倍半硅氧烷是新型的有机-无机杂化分子,可用作合成纳米结构材料的构建单元。通过将POSS分子纳入聚合材料中,可以改变诸如耐热性和玻璃化转变温度等机械性能。不幸的是,目前尚不完全了解导致这些增强作用的分子机制。为了阐明导致这些效应的分子现象,我们研究了溶液中遥爪POSS分子的构象及其自扩散系数,作为碳氢化合物主链长度的函数。我们关注的分子中烷烃主链的回转半径与倍半硅氧烷笼的大小相当。我们的结果表明,主链对溶解的遥爪杂化分子的平衡和传输性质都有显著影响。这些观察结果对于开发指导纳米结构材料自组装的策略很有用。