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两种新型离域π…π原型的可靠结构与能量:氰分子二聚体和丁二炔二聚体。

Reliable structures and energetics for two new delocalized pi...pi prototypes: cyanogen dimer and diacetylene dimer.

作者信息

Hopkins Brian W, Elsohly Adel M, Tschumper Gregory S

机构信息

Department of Chemistry and Biochemistry, University of Mississippi, University, MS 38677-1848, USA.

出版信息

Phys Chem Chem Phys. 2007 Apr 7;9(13):1550-8. doi: 10.1039/b616878g. Epub 2007 Feb 7.

Abstract

Two new prototype delocalized pi[dot dot dot]pi complexes are introduced: the dimers of cyanogen, (N[triple bond]C-C[triple bond]N)(2), and diacetylene, (HC[triple bond]C-C[triple bond]CH)(2). These dimers have properties similar to larger delocalized pi...pi systems such as benzene dimer but are small enough that they can be probed in far greater detail with high accuracy electronic structure methods. Parallel-slipped and T-shaped structures of both cyanogen dimer and diacetylene dimer have been optimized with 15 different procedures. The effects of basis set size, theoretical method, counterpoise correction, and the rigid monomer approximation on the structure and energetics of each dimer have been examined. MP2 and CCSD(T) optimized geometries for all four dimer structures are reported, as well as estimates of the CCSD(T) complete basis set (CBS) interaction energy for every optimized geometry. The data reported here suggest that future optimizations of delocalized pi[dot dot dot]pi clusters should be carried out with basis sets of triple-zeta quality. Larger basis sets and the expensive counterpoise correction to the molecular geometry are not necessary. The rigid monomer approximation has very little effect on structure and energetics of these dimers and may be used without consequence. Due to a consistent cancellation of errors, optimization with the MP2 method leads to CCSD(T)/CBS interaction energies that are within 0.2 kcal mol(-1) of those for structures optimized with the CCSD(T) method. Future studies that aim to resolve structures separated by a few tenths of a kcal mol(-1) should consider the effects of optimization with the CCSD(T) method.

摘要

本文介绍了两种新型的离域π…π复合物原型:氰(N≡C-C≡N)₂和丁二炔(HC≡C-C≡CH)₂的二聚体。这些二聚体具有与苯二聚体等更大的离域π…π体系相似的性质,但体积足够小,以至于可以用高精度电子结构方法进行更详细的研究。氰二聚体和丁二炔二聚体的平行滑移和T形结构已用15种不同方法进行了优化。研究了基组大小、理论方法、平衡校正和刚性单体近似对每个二聚体结构和能量的影响。报告了所有四种二聚体结构的MP2和CCSD(T)优化几何结构,以及每个优化几何结构的CCSD(T)完全基组(CBS)相互作用能估计值。本文报道的数据表明,未来离域π…π簇的优化应使用三重ζ质量的基组进行。不需要更大的基组和对分子几何结构进行昂贵的平衡校正。刚性单体近似对这些二聚体的结构和能量影响很小,可以无影响地使用。由于误差的一致抵消,用MP2方法优化得到的CCSD(T)/CBS相互作用能与用CCSD(T)方法优化得到的结构的相互作用能相差在0.2 kcal mol⁻¹以内。未来旨在解析相差十分之几kcal mol⁻¹的结构的研究应考虑用CCSD(T)方法优化的影响。

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