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Structure Analysis for Hydrate Models of Ethyleneimine Oligomer by Quantum Chemical Calculation

机译:乙烯亚胺低聚物水合物模型的量子化学计算结构分析

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Structure analyses for hydrate models of ethyleneimine oligomer (5-mer as model of PEI) were investigated by quantum chemical calculations. Conformation energies and structures optimized for hydrate models of (ttt)5 and (tgt)5 conformers were examined. Hydrate ratio, h [h = H2O/N (mol)], was set from 0.5 to 2. In anhydrates, (tg+t)5 conformer was more stable (?1.8 kcal/m.u.) than (ttt)5. In hydrates, (ttt)5 conformers were more stable (?0.7 - ?4.3) than (tg+t)5. These results corresponded to experimental results that anhydrous linear PEI crystal changes from double helical to single planar chain in hydration process. Structures calculated for (ttt)5 agreed in those observed for hydrates of PEI. In all (tg+t)5 conformers, O???H bonds between waters were found with the decreases of N???H bonds between imino group and water. The O???H bonds in (tg+t)5 conformer resulted in its high chain torsion, and strongly related with instability and structure change (large swelling).
机译:通过量子化学计算研究了乙撑亚胺低聚物(5-mer作为PEI的模型)的水合物模型的结构分析。检查了针对(ttt)5和(tgt)5构象异构体水合物模型优化的构象能和结构。水合物比h [h = H2O / N(mol)]设置为0.5至2。在无水物中,(tg + t)5构象异构体比(ttt)5更稳定(?1.8 kcal / m.u。)。在水合物中,(ttt)5构象异构体比(tg + t)5更稳定(?0.7-?4.3)。这些结果与水合过程中无水线性PEI晶体从双螺旋链变为单平面链的实验结果相对应。对(ttt)5计算的结构与对PEI水合物观察到的结构一致。在所有(tg + t)5构象体中,发现水之间的O-H键随亚氨基与水之间的N-H键的减少而降低。 (tg + t)5构象异构体中的O ++ H键导致其高链扭曲,并且与不稳定性和结构改变(大溶胀)密切相关。

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