Ho David G, Gao Ruomei, Celaje Jeff, Chung Ha-Yong, Selke Matthias
Department of Chemistry and Biochemistry, California State University, Los Angeles, Los Angeles, CA 90032, USA.
Science. 2003 Oct 10;302(5643):259-62. doi: 10.1126/science.1089145.
We prepared the primary adduct for the reaction of singlet dioxygen (1O2) with an arylphosphine by using the sterically hindered arylphosphine tris(o-methoxyphenyl)phosphine. The resulting phosphadioxirane has a dioxygen molecule triangularly bound to the phosphorus atom. Olefin trapping experiments show that the phosphadioxirane can undergo nonradical oxygen atom-transfer reactions. Under protic conditions, two different intermediates are formed during the reaction of singlet dioxygen with tris(o-methoxyphenyl)phosphine, namely, the corresponding hydroperoxy arylphosphine and a hydroxy phosphorane. Experiments with other arylphosphines possessing different electronic and steric properties demonstrate that the relative stability of the tris(o-methoxyphenyl)phosphadioxirane is due to both steric and electronic effects.
我们通过使用空间位阻芳基膦三(邻甲氧基苯基)膦制备了单线态二氧(1O2)与芳基膦反应的主要加合物。所得的磷杂二氧杂环丙烷有一个二氧分子以三角形方式与磷原子相连。烯烃捕获实验表明,该磷杂二氧杂环丙烷可发生非自由基氧原子转移反应。在质子条件下,单线态二氧与三(邻甲氧基苯基)膦反应过程中会形成两种不同的中间体,即相应的氢过氧芳基膦和羟基磷烷。对具有不同电子和空间性质的其他芳基膦进行的实验表明,三(邻甲氧基苯基)磷杂二氧杂环丙烷的相对稳定性是由空间和电子效应共同导致的。