Unilever Centre For Molecular Science Informatics, Department of Chemistry, Lensfield Road, Cambridge CB2 1EW, UK.
Org Biomol Chem. 2013 Jan 7;11(1):90-7. doi: 10.1039/c2ob26547h.
Polyurethane foams are widely used materials and control of their physical properties is a significant challenge. Management of cyclo-trimerisation during the polymerisation process is vital when tailoring the mechanical properties of the foam. Proazaphosphatranes are known to efficiently catalyse the cyclo-trimerisation of organic isocyanates, giving high purity isocyanurate with little uretdione by-product. The mechanism of this catalysis was previously unknown, although some zwitterionic intermediates have been identified spectroscopically. We have investigated a nucleophilic-catalysis reaction pathway involving sequential addition of methyl isocyanate to activated zwitterionic intermediates using density functional theory calculations. Evidence for significant transannulation by the proazaphosphatrane nitrogen was found for all intermediates, offering stabilisation of the phosphonium cation. Steric crowding at the proazaphosphatrane nucleophilic phosphorus gives rise to a preference for direct isocyanurate formation rather than via the uretdione, in sharp contrast to the uncatalysed system which has been found to preferentially proceed via the kinetic uretdione product. The investigations suggest the mechanism of proazaphosphatrane catalysed cyclo-oligomerisation does not proceed via the uretdione product, and hence why little of this impurity is observed experimentally.
聚氨酯泡沫是一种应用广泛的材料,控制其物理性能是一项重大挑战。在定制泡沫的机械性能时,控制聚合过程中环三聚反应至关重要。已知原氮杂磷杂环戊烷能够有效地催化有机异氰酸酯的环三聚反应,得到高纯度的异氰尿酸酯,几乎没有脲二酮副产物。尽管已经通过光谱学鉴定出一些两性离子中间体,但这种催化的机理以前是未知的。我们使用密度泛函理论计算研究了涉及顺序向活化的两性离子中间体中添加甲基异氰酸酯的亲核催化反应途径。对于所有中间体,都发现原氮杂磷杂环戊烷氮的显著跨环化作用,为磷翁阳离子提供了稳定性。亲核磷上的原氮杂磷杂环戊烷的空间拥挤导致直接形成异氰尿酸酯的倾向,而不是通过脲二酮,与未催化体系形成鲜明对比,后者被发现优先通过动力学脲二酮产物进行。研究表明,原氮杂磷杂环戊烷催化的环低聚反应的机理不是通过脲二酮产物进行的,这就是为什么实验中观察到的这种杂质很少。