Roy Sangita, Das Debapratim, Dasgupta Antara, Mitra Rajendra Narayan, Das Prasanta Kumar
Department of Biological Chemistry, Indian Association for the Cultivation of Science, Jadavpur, Kolkata.
Langmuir. 2005 Nov 8;21(23):10398-404. doi: 10.1021/la051548s.
The present study provides a molecular understanding of the origin of the chirality in aqueous micelles and its correlation with the proficiency of stereoselective ketone reduction. The effects of varied headgroup architecture on the surface-active properties as well as on other microstructural parameters were studied and correlated to the structural differences of these naturally occurring amino acid containing surfactants (1-4). Micropolarity sensed by pyrene showed that the micelles prepared using 1-4 are mostly hydrated; particularly large headgroup size surfactant produces more polar environment. A theoretical study was done to quantify the varied spatial dissymmetry for all four surfactants. Asymmetric reduction of prochiral ketones was carried out at the aqueous micellar interface of these chiral amphiphiles by exploiting the supramolecular chirality as evidenced from a circular dichroism study. The enantioselectivity of the reduction process is rationally improved through increase in spatial dissymmetry and steric constraint imposed at the micellar interface by the polar head of surfactants.
本研究提供了对水性胶束中手性起源及其与立体选择性酮还原效率相关性的分子理解。研究了不同头基结构对表面活性性质以及其他微观结构参数的影响,并将其与这些天然存在的含氨基酸表面活性剂(1-4)的结构差异相关联。芘检测到的微极性表明,使用1-4制备的胶束大多是水合的;特别是较大头基尺寸的表面活性剂会产生更多的极性环境。进行了一项理论研究,以量化所有四种表面活性剂不同的空间不对称性。通过利用圆二色性研究证明的超分子手性,在手性两亲分子的水性胶束界面进行前手性酮的不对称还原。通过增加空间不对称性和表面活性剂极性头在胶束界面施加的空间位阻,合理地提高了还原过程的对映选择性。