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酰溴和醛的[2+2]环缩合反应构建反式构型β-内酰胺的不对称合成:协同 Al(salen)-吡啶鎓催化剂;吡啶鎓取代基效应研究。

Cooperative Al(salen)-pyridinium catalysts for the asymmetric synthesis of trans-configured β-lactones by [2+2]-cyclocondensation of acylbromides and aldehydes: investigation of pyridinium substituent effects.

机构信息

Institut für Organische Chemie, Universität Stuttgart, Stuttgart, Germany.

出版信息

Molecules. 2012 Jun 12;17(6):7121-50. doi: 10.3390/molecules17067121.

Abstract

The trans-selective catalytic asymmetric formation of β-lactones constitutes an attractive surrogate for anti-aldol additions. Recently, we have reported the first catalyst which is capable of forming trans-β-lactones with high enantioselectivity from aliphatic (and aromatic) aldehyde substrates by cyclocondensation with acyl bromides. In that previous study the concepts of Lewis acid and organic aprotic ion pair catalysis were combined in a salen-type catalyst molecule. Since a pyridinium residue on the salen periphery is essential for high trans- and enantioselectivity, we were interested in the question of whether substituents on the pyridinium rings could be used to further improve the catalyst efficiency, as they might have a significant impact on the effective charges within the heterocycles. In the present study we have thus compared a small library of aluminum salen/bispyridinium catalysts mainly differing in the substituents on the pyridinium residues. As one result of these studies a new catalyst was identified which offers slightly superior stereoselectivity as compared to the previously reported best catalyst. NBO calculations have revealed that the higher stereoselectivity can arguably not be explained by the variation of the effective charge.

摘要

反羟醛加成的β-内酰胺的反选择性催化不对称形成是一种很有吸引力的替代方法。最近,我们报道了首例能够通过与酰溴的环缩合,从脂肪族(和芳香族)醛底物中以高对映选择性形成反式-β-内酰胺的催化剂。在之前的研究中,路易斯酸和有机非质子离子对催化的概念在salen 型催化剂分子中得到了结合。由于在salen 外围的吡啶环残基对于高的反式和对映选择性是必不可少的,我们对吡啶环上的取代基是否可以进一步提高催化剂效率感兴趣,因为它们可能对杂环内的有效电荷有重大影响。在本研究中,我们比较了一组主要在吡啶环取代基上有所不同的铝salen/双吡啶催化剂的小文库。作为这些研究的结果之一,确定了一种新的催化剂,与之前报道的最佳催化剂相比,其立体选择性略有提高。NBO 计算表明,较高的立体选择性不能用有效电荷的变化来解释。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e8bc/6268914/60a416ddd570/molecules-17-07121-g004.jpg

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