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首页> 外文期刊>Macromolecules >Conformational Characteristics of Poly(trimethylene sulfide) and Structure-Property Relationships of Representative Polysulfides and Polyethers
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Conformational Characteristics of Poly(trimethylene sulfide) and Structure-Property Relationships of Representative Polysulfides and Polyethers

机译:聚(三亚甲基硫醚)的构象特征以及代表性的聚硫醚和聚醚的结构-性质关系

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Conformational characteristics of poly(trimethylene sulfide) (PTMS) have been investigated by a rotational isomeric state analysis of ab initio molecular orbital calculations and ~1H and ~(13)C NMR experiments for a monomeric model compound,l,3-bis(methylthio)propane,and the characteristic ratio and dipole moment ratio of the unperturbed PTMS chain.Both C-S (the first-order interaction energy,-0.30 kcal mol~(-1)) and C-C (-0.58 kcal mol~(-1)) bonds prefer the gauche conformation.For comparison,conformational analysis of the corresponding polyether,poly(trimethylene oxide),has also been carried out.The C-O (+0.97 kcal mol~(-1)) and C-C (-0.47 kcal mol~(-1)) bonds show trans and gauche preferences,respectively.These results are consistent with the conformational stabilities predicted by the natural bond orbital analysis on model compounds of polyethylene sulfide) (PES) and poly(ethylene oxide).Without the strong S...S repulsion,therefore,the C-C bond adjacent to the C-S bond exhibits its inherent gauche preference.Without the (C-H)...O attraction,the ethereal C-C bond is subject to the attractive gauche effect.For representative polysulfides and polyethers,relationships between conformations in the THETA and crystalline states and thermal properties have been investigated.Even in the THETA and crystalline states,the polymers mostly keep the conformational preferences found for their small model compounds;as an exception,poly(propylene sulfide) and poly(propylene oxide),having a methyl side chain,crystallize to adopt the metastable all-trans conformation.On average,the configurational entropy of the polymers amounts to 80-90% of entropy of fusion,and the configurational energy change between crystalline and molten states accounts for ca.30% of enthalpy of fusion.Of the polymers investigated here,PES has an exceptionally high melting point;the dipole-dipole interaction in the PES crystal was evaluated to be -1.0 kcal mol~(-1) (ca.30% of the enthalpy of fusion),thus being the source of the thermostability.
机译:聚三亚甲基硫醚(PTMS)的构象特征已通过对单体分子模型化合物1,3-双(甲硫基)的从头算分子轨道计算的旋转异构态分析和〜1H和〜(13)C NMR实验研究丙烷,以及无扰动PTMS链的特征比和偶极矩比.CS(一阶相互作用能,-0.30 kcal mol〜(-1))和CC(-0.58 kcal mol〜(-1))为进行比较,还对相应的聚醚,聚三甲撑氧进行了构象分析。CO(+0.97 kcal mol〜(-1))和CC(-0.47 kcal mol〜( -1))键分别显示反式和gauche偏好。这些结果与通过自然键轨道分析对聚硫醚(PES)和聚环氧乙烷的模型化合物预测的构象稳定性一致。 ..S排斥,因此,与CS键相邻的CC键显示出固有的gauche偏好。在没有(CH)... O吸引的情况下,醚性CC键会受到吸引的gauche效应。对于代表性的多硫化物和聚醚,已经研究了THETA中的构象与晶态与热性质之间的关系。在THETA和结晶状态下,聚合物大多保持其小分子化合物所具有的构象偏好;作为例外,具有甲基侧链的聚(丙烯硫醚)和聚(环氧丙烷)结晶后采用亚稳的全-平均而言,聚合物的构型熵相当于熔融熵的80-90%,结晶态和熔融态之间的构型能量变化约占熔融焓的30%。在这里研究的聚合物中, PES具有极高的熔点;据估计,PES晶体中的偶极-偶极相互作用为-1.0 kcal mol〜(-1)(约30%的熔融焓),因此g热稳定性的来源。

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