Dipartimento di Chimica, Materiali e Ingegneria Chimica G. Natta, Politecnico di Milano, Piazza Leonardo da Vinci 32, I-20133 Milano, Italy.
J Phys Chem B. 2012 Jul 19;116(28):8299-311. doi: 10.1021/jp303715v. Epub 2012 Jul 5.
State-of-the-art computational methods in solid-state chemistry were applied to predict the structural and spectroscopic properties of the α and γ crystalline polymorphs of nylon 6. Density functional theory calculations augmented with an empirical dispersion correction (DFT-D) were used for the optimization of the two different crystal structures and of the isolated chains, characterized by a different regular conformation and described as one-dimensional infinite chains. The structural parameters of both crystalline polymorphs were correctly predicted, and new insight into the interplay of conformational effects, hydrogen bonding, and van der Waals interactions in affecting the properties of the crystal structures of polyamides was obtained. The calculated infrared spectra were compared to experimental data; based on computed vibrational eigenvectors, assignment of the infrared absorptions of the two nylon 6 polymorphs was carried out and critically analyzed in light of previous investigations. On the basis of a comparison of the computed and experimental IR spectra, a set of marker bands was identified and proposed as a tool for detecting and quantifying the presence of a given polymorph in a real sample: several marker bands employed in the past were confirmed, whereas some of the previous assignments are criticized. In addition, some new marker bands are proposed. The results obtained demonstrate that accurate computational techniques are now affordable for polymers characterization, opening the way to several applications of ab initio modeling to the study of many families of polymeric materials.
采用最先进的固态化学计算方法来预测尼龙 6 的α和γ晶型的结构和光谱性质。采用密度泛函理论计算并辅以经验色散校正(DFT-D)对两种不同晶体结构和孤立链进行了优化,它们具有不同的规则构象,可描述为一维无限链。正确预测了两种晶型的结构参数,并深入了解了构象效应、氢键和范德华相互作用在影响聚酰胺晶体结构性质方面的相互作用。计算出的红外光谱与实验数据进行了比较;基于计算出的振动特征向量,对两种尼龙 6 多晶型体的红外吸收进行了归属,并根据以前的研究进行了批判性分析。基于计算和实验 IR 光谱的比较,确定了一组标记带,并将其作为检测和定量实际样品中给定多晶型体存在的工具提出:过去使用的一些标记带得到了证实,而一些先前的归属则受到了批评。此外,还提出了一些新的标记带。研究结果表明,现在可以负担得起准确的计算技术来对聚合物进行表征,为从头计算建模在许多聚合物材料家族的研究中的应用开辟了道路。