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硼烷及其氟取代衍生物与含氮碱基配合物中 1J(B-N)、1J(B-H)和 1J(B-F)的键自旋-自旋耦合常数的结构和电子效应。

Structural and electronic effects on one-bond spin-spin coupling constants 1J(B-N), 1J(B-H), and 1J(B-F) for complexes of nitrogen bases with BH3 and its fluoro-substituted derivatives.

机构信息

Department of Chemistry, Youngstown State University, Youngstown, Ohio 44555, United States.

出版信息

J Phys Chem A. 2010 Dec 9;114(48):12775-9. doi: 10.1021/jp1085747. Epub 2010 Nov 10.

DOI:10.1021/jp1085747
PMID:21067128
Abstract

Ab initio equation-of-motion coupled cluster (EOM-CCSD) one-bond spin-spin coupling constants (1)J(B-N), (1)J(B-H), and (1)J(B-F) have been evaluated for complexes X:BH(n)F(3-n) with X = N(2), NCH, NCLi, H(2)CNH, NF(3), and NH(3), for n = 0-3. These complexes can be classified as either covalent or van der Waals complexes, on the basis of their binding energies and B-N distances. (1)J(B-N) for covalent complexes varies significantly from -19 to +9 Hz, whereas (1)J(B-N) is less than 2 Hz for van der Waals complexes. An absolute value of (1)J(B-N) of 3 Hz or greater indicates that the complex is covalently bonded, but a small value of this coupling constant does not necessarily mean that it is a van der Waals complex, in view of the variation among these complexes found for (1)J(B-N) as a function of the B-N distance. Deformation of the boron acid upon complex formation and electron donation by the nitrogen base has opposing effects on both (1)J(B-H) and (1)J(B-F). These effects are relatively small in van der Waals complexes. In covalent complexes, electron donation has the dominant effect on (1)J(B-H), and on (1)J(B-F) in complexes with BH(2)F and BHF(2), but acid deformation has the dominant effect on (1)J(B-F) in complexes with BF(3). Values of both (1)J(B-H) and (1)J(B-F) reflect the van der Waals or covalent nature of the B-N bond.

摘要

从头算分子轨道耦合簇(EOM-CCSD)单键自旋-自旋耦合常数(1)J(B-N)、(1)J(B-H)和(1)J(B-F)已针对复合物 X:BH(n)F(3-n)进行了评估,其中 X = N(2)、NCH、NCLi、H(2)CNH、NF(3)和 NH(3),n = 0-3。这些复合物可以根据它们的结合能和 B-N 距离分类为共价或范德华复合物。共价复合物的(1)J(B-N)值变化范围从-19 到+9 Hz,而范德华复合物的(1)J(B-N)小于 2 Hz。(1)J(B-N)的绝对值为 3 Hz 或更大表明该复合物是共价键合的,但考虑到在 B-N 距离作为函数的情况下,这些复合物中(1)J(B-N)的变化,这个耦合常数的小值并不一定意味着它是范德华复合物。硼酸在形成复合物时的变形和氮碱基的电子捐赠对(1)J(B-H)和(1)J(B-F)都有相反的影响。这些影响在范德华复合物中相对较小。在共价复合物中,电子捐赠对(1)J(B-H)有主要影响,对 BH(2)F 和 BHF(2)复合物中的(1)J(B-F)也有主要影响,但在 BF(3)复合物中,酸变形对(1)J(B-F)有主要影响。(1)J(B-H)和(1)J(B-F)的值都反映了 B-N 键的范德华或共价性质。

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