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1,1'-联萘衍生物的光学稳定性

Optical Stability of 1,1'-Binaphthyl Derivatives.

作者信息

Tkachenko Nikolay V, Scheiner Steve

机构信息

Department of Chemistry and Biochemistry, Utah State University, Logan, Utah 84322-0300, United States.

出版信息

ACS Omega. 2019 Mar 29;4(3):6044-6049. doi: 10.1021/acsomega.9b00619. eCollection 2019 Mar 31.

Abstract

The racemization process of various 1,1'-binaphthyl derivatives is studied by quantum calculations. The preferred racemization pathway passes through a transition state belonging to the symmetry group. The energy barrier for this process is independent of solvation, the electron-withdrawing/releasing power of substituents, or their ability to engage in H-bonds within the molecule. The primary factor is instead the substituent size. The barrier is thus reduced when the -OH groups of 1,1'-bi-2-naphthol are replaced by H. There is a drop in the barrier also when the substituents are moved from the 2,2' positions to 6,6', where they will not come close to one another in the transition state. Upon removal of the peripheral aromatic rings of the binaphthyl system, the biphenyl system undergoes a facile racemization. It is concluded that the optimal means of improving optical stability of 1,1'-binaphthyl systems is the substitution of large bulky groups in the 2,2' positions.

摘要

通过量子计算研究了各种1,1'-联萘衍生物的外消旋化过程。优选的外消旋化途径通过属于对称群的过渡态。该过程的能垒与溶剂化、取代基的吸电子/给电子能力或它们在分子内形成氢键的能力无关。相反,主要因素是取代基的大小。因此,当1,1'-联-2-萘酚的-OH基团被H取代时,能垒降低。当取代基从2,2'位移动到6,6'位时,能垒也会下降,在过渡态中它们不会彼此靠近。去除联萘体系的外围芳环后,联苯体系会发生容易的外消旋化。得出的结论是,提高1,1'-联萘体系光学稳定性的最佳方法是在2,2'位取代大的 bulky 基团。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5e88/6648391/0833116bff4c/ao-2019-00619c_0001.jpg

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