Pinxterhuis Erik B, Gualtierotti Jean-Baptiste, Heeres Hero J, de Vries Johannes G, Feringa Ben L
Stratingh Institute for Chemistry , Faculty of Mathematics and Natural Sciences , University of Groningen , Nijenborgh 4 , 9747AG Groningen , The Netherlands . Email:
Department of Chemical Engineering , ENTEG , University of Groningen , Nijenborgh 4 , 9747AG Groningen , The Netherlands.
Chem Sci. 2017 Sep 1;8(9):6409-6418. doi: 10.1039/c7sc02783d. Epub 2017 Jul 21.
Access to enantiopure compounds on large scale in an environmentally friendly and cost-efficient manner remains one of the greatest challenges in chemistry. Resolution of racemates using enantioselective liquid-liquid extraction has great potential to meet that challenge. However, a relatively feeble understanding of the chemical principles and physical properties behind this technique has hampered the development of hosts possessing sufficient resolving power for their application to large scale processes. Herein we present, employing the previously untested SPINOL based phosphoric acids host family, an in depths study of the parameters affecting the efficiency of the resolution of amino-alcohols in the optic of further understanding the core principles behind ELLE. We have systematically investigated the dependencies of the enantioselection by parameters such as the choice of solvent, the temperature, as well as the pH and bring to light many previously unsuspected and highly intriguing interactions. Furthermore, utilizing these new insights to our advantage, we developed novel, highly efficient, extraction and resolving protocols which provide remarkable levels of enantioselectivity. It was shown that the extraction is catalytic in host by demonstrating transport in a U-tube and finally it was demonstrated how the solvent dependency could be exploited in an unprecedented triphasic resolution system.
以环境友好且经济高效的方式大规模获取对映体纯化合物仍然是化学领域最大的挑战之一。使用对映选择性液 - 液萃取拆分外消旋体极有潜力应对这一挑战。然而,对该技术背后化学原理和物理性质的理解相对薄弱,阻碍了具有足够拆分能力以应用于大规模过程的主体的开发。在此,我们使用此前未经测试的基于联萘酚的磷酸主体家族,深入研究影响氨基醇拆分效率的参数,以进一步理解液 - 液萃取拆分(ELLE)背后的核心原理。我们系统地研究了诸如溶剂选择、温度以及pH值等参数对对映选择性的影响,并揭示了许多此前未被怀疑且极具吸引力的相互作用。此外,利用这些新见解,我们开发了新颖、高效的萃取和拆分方案,这些方案提供了显著水平的对映选择性。通过在U形管中进行传输证明了萃取在主体中具有催化作用,最后展示了如何在前所未有的三相拆分系统中利用溶剂依赖性。