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NMR J-偶联交替(JCA)与碳链分子性质的密切关系。

Close Relationships between NMR J-Coupling Alternation (JCA) and Molecular Properties of Carbon Chains.

机构信息

Instituto de Física , Universidade Federal da Bahia , 40210-340 Salvador , Bahia , Brazil.

Centro de Ciência e Tecnologia em Energia e Sustentabilidade , Universidade Federal do Recôncavo da Bahia , 44085-132 Feira de Santana , Bahia , Brazil.

出版信息

J Chem Theory Comput. 2019 Mar 12;15(3):1605-1615. doi: 10.1021/acs.jctc.8b01141. Epub 2019 Feb 21.

Abstract

We propose a J-coupling alternation (JCA) value that is demonstrated to be a suitable parameter to evaluate the nuclear magnetic resonance (NMR) indirect spin-spin coupling constants (SSCCs) as a function of molecular properties of chains by increasing their length. As an application, we report a theoretical study of the SSCCs for the interactions between neighbor nuclei in increasingly patterned carbon chains within density functional theory. First, we examine the J-coupling constants between H and C nuclei ( J) considering the separation distance, as well as between two adjacent C nuclei ( J) considering their relative positions in polyynes and cumulenes. Further, we define and determine JCA in terms of the differences of J, which is investigated as a function of several molecular properties, e.g., cohesive energy, characteristic vibrational frequency, average polarizability, and energy gap of the systems. We also determine JCA for other types of carbon chains, such as diphenyl-capped polyynes, polyacetylene and polythiophene. The behavior of JCA as a function of the energy gap may be related to highly π-conjugated low-band-gap carbon chains. Overall, JCA correlates very well with the electronic properties of these chains, especially with their energy gap, exhibiting positive values for pristine polyyne and polythiophene and negative values for pristine cumulene and plyacetylene. These findings indicate an alternative way to establish an appropriate SSCC descriptor that characterizes the electronic nature of the system, such as the proposed JCA value averaging the whole system, instead of using only the individual J-coupling values to give insights into the properties of large and extended systems.

摘要

我们提出了一个 J 耦合交替(JCA)值,该值被证明是一个合适的参数,可以通过增加链的长度来评估核磁共振(NMR)间接自旋-自旋耦合常数(SSCC)作为分子性质的函数。作为应用,我们报告了在密度泛函理论中,对越来越多图案化碳链中相邻核之间的 SSCC 的理论研究。首先,我们考虑分离距离,检查 H 和 C 核之间的 J 耦合常数( J ),以及在多炔和累积烯中考虑它们相对位置的两个相邻 C 核之间的 J 耦合常数( J )。此外,我们定义并确定 JCA 术语中的 J 差异,该差异作为几个分子性质的函数进行研究,例如,系统的内聚能、特征振动频率、平均极化率和能隙。我们还确定了其他类型的碳链,如二苯基封端的多炔、聚乙炔和聚噻吩的 JCA。JCA 作为能隙函数的行为可能与高度π共轭的低带隙碳链有关。总的来说,JCA 与这些链的电子性质非常相关,特别是与它们的能隙,对于原始的多炔和聚噻吩呈现正值,而对于原始的累积烯和聚乙炔呈现负值。这些发现表明了一种建立合适的 SSCC 描述符的替代方法,该描述符可以表征系统的电子性质,例如所提出的 JCA 值,它可以平均整个系统,而不是仅使用单个 J 耦合值来深入了解大型和扩展系统的性质。

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