碳硅烷树状大分子与聚胺胺的结构研究

M Elshakre , A.S Atallah , S Santos, S Grigoras
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引用次数: 11

摘要

采用分子力学方法,研究了几种取代碳硅烷基树状大分子与聚酰胺胺(PAMAM)的构型和空间相互作用。一个尺度范德华能参数:尺度立体能,被定义,并用于比较这些树状大分子的空间排斥力。我们的计算表明,树状大分子表面端基之间的空间排斥力在更高代的这种大分子中不会增加。密度计算表明,这种性质随着g的增加而降低。转动惯量计算表明,所考虑的树状大分子的形状在低世代时是不对称的,在高世代时变成球形。碳硅烷树状大分子的形状比PAMAM更接近球形。结果表明,高代结构可以增加大分子表面末端基的数量,而不增加该区域的密度,因此这些因素(表面末端基之间的空间排斥力或高密度)不会阻碍化学构建高代完全支链的树状大分子。
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A structural study of carbosilane dendrimers versus polyamidoamine

Several types of substituted carbosilane-based dendrimers are studied in comparison with polyamidoamine (PAMAM), using molecular mechanics approach, to evaluate the shape and steric interactions when the generation number (G) increases. A scaled van der Waals energy parameter: the scaled steric energy, is defined, and used, to compare the steric repulsion in these dendrimers. Our calculations indicate that the steric repulsions, between the end groups at the surface of dendrimers, do not increase for higher generations of such macromolecules. Density calculations show that this property decreases with the increase of G. The moment of inertia calculations show that the shape of the considered dendrimers is asymmetrical for lower generations and becomes spherical at higher generations. The shape of the carbosilane dendrimers is more spherical than PAMAM. The results show that higher generations can afford the increased number of terminal groups at the surface of the macromolecules, without increase of the density in this region, therefor these factors (steric repulsion between the end groups at the surface, or high density) would not impede the chemistry to build higher generations of completely branched dendrimers.

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