Liu Le, Cotelle Yoann, Klehr Juliane, Sakai Naomi, Ward Thomas R, Matile Stefan
Department of Organic Chemistry , University of Geneva , Geneva , Switzerland . Email:
National Centre of Competence in Research (NCCR) Molecular Systems Engineering , Switzerland . www.nccr-mse.ch.
Chem Sci. 2017 May 1;8(5):3770-3774. doi: 10.1039/c7sc00525c. Epub 2017 Mar 17.
Anion-π interactions have been introduced recently to catalysis. The idea of stabilizing anionic intermediates and transition states on π-acidic surfaces is a new fundamental concept. By now, examples exist for asymmetric enolate, enamine, iminium and transamination chemistry, and the first anion-π enzyme has been created. Delocalized over large aromatic planes, anion-π interactions appear particularly attractive to stabilize extensive long-distance charge displacements during domino processes. Moving on from the formation of cyclohexane rings with five stereogenic centers in one step on a π-acidic surface, we here focus on asymmetric anion-π catalysis of domino reactions that afford bicyclic products with quaternary stereogenic centers. Catalyst screening includes a newly synthesized, better performing anion-π version of classical organocatalysts from cinchona alkaloids, and anion-π enzymes. We find stereoselectivities that are clearly better than the best ones reported with conventional catalysts, culminating in unprecedented diastereospecificity. Moreover, we describe achiral salts as supramolecular chirality enhancers and report the first artificial enzyme that operates in neutral water with anion-π interactions, , interactions that are essentially new to enzymes. Evidence in support of contributions of anion-π interactions to asymmetric catalysis include increasing diastereo- and enantioselectivity with increasing rates, , asymmetric transition-state stabilization in the presence of π-acidic surfaces and inhibition with the anion selectivity sequence NO > Br > BF > PF.
阴离子-π相互作用最近已被引入到催化领域。在π酸性表面上稳定阴离子中间体和过渡态的想法是一个新的基本概念。到目前为止,已经有不对称烯醇盐、烯胺、亚胺鎓和转氨化学的实例,并且首个阴离子-π酶也已被创制出来。阴离子-π相互作用分散在大的芳香平面上,在多米诺过程中稳定广泛的长距离电荷位移方面显得特别有吸引力。在π酸性表面上一步形成具有五个立体ogenic中心的环己烷环的基础上,我们在此聚焦于多米诺反应的不对称阴离子-π催化,该反应能得到具有季立体ogenic中心的双环产物。催化剂筛选包括一种新合成的、性能更好的来自金鸡纳生物碱的经典有机催化剂的阴离子-π变体,以及阴离子-π酶。我们发现立体选择性明显优于传统催化剂所报道的最佳选择性,最终达到前所未有的非对映体特异性。此外,我们将非手性盐描述为超分子手性增强剂,并报道了首个在中性水中通过阴离子-π相互作用起作用的人工酶,这种相互作用对于酶来说基本上是全新的。支持阴离子-π相互作用对不对称催化有贡献的证据包括:随着反应速率增加,非对映选择性和对映选择性提高;在存在π酸性表面时不对称过渡态稳定;以及按阴离子选择性顺序NO > Br > BF > PF产生抑制作用。