Department of Chemistry, 1102 Natural Sciences II, University of California, Irvine, California 92697-2025, USA.
J Org Chem. 2012 Feb 17;77(4):1939-51. doi: 10.1021/jo2025724. Epub 2012 Jan 30.
A new family of air- and moisture-stable enantiopure C,N-palladacycles (PIN-acac complexes) were prepared in good overall yield in three steps from 2-iodo-1-naphthoic acid and enantiopure β-amino alcohols. Three of these PIN complexes were characterized by single-crystal X-ray analysis. As anticipated, the naphthalene and imidazoline rings of PIN-acac complexes 18a and 18b were canted significantly from planarity and projected the imidazoline substituents R(1) and R(2) on opposite faces of the palladium square plane. Fifteen PIN complexes were evaluated as catalysts for the rearrangement of prochiral (E)-allylic trichloroacetimidate 19 (eq 2) and the S(N)2' allylic substitution of acetic acid with prochiral (Z)-allylic trichloroacetimidate 23. Although these complexes were kinetically poor catalysts for the Overman rearrangement, they were good catalysts for the allylic substitution reaction, providing branched allylic esters in high yield. However, enantioselectivities were low to moderate and significantly less than that realized with palladacyclic complexes of the COP family. Computational studies support an anti-acetoxypalladation/syn-deoxypalladation mechanism analogous to that observed with COP catalysts. The computational study further suggests that optimizing steric influence in the vicinity of the carbon ligand of a chiral C,N-palladacycle, rather than near the nitrogen heterocycle, is the direction to pursue in future development of improved enantioselective catalysts of this motif.
一种新的空气稳定和水分稳定的对映纯 C,N-钯环(PIN-acac 配合物)家族,通过三步反应,以 2-碘-1-萘酸和对映纯β-氨基醇为原料,以良好的总收率制备。其中三个 PIN 配合物通过单晶 X 射线分析进行了表征。正如预期的那样,PIN-acac 配合物 18a 和 18b 的萘环和咪唑啉环明显偏离平面,并将咪唑啉取代基 R(1)和 R(2)投影到钯正方形平面的相对面上。对 15 个 PIN 配合物进行了评估,作为催化剂,用于手性(E)-烯丙基三氯乙酰胺 19 的重排(式 2)和手性(Z)-烯丙基三氯乙酰胺 23 的 S(N)2'烯丙基取代反应。尽管这些配合物作为动力学上较差的 Overman 重排催化剂,但它们是烯丙基取代反应的良好催化剂,提供了高产率的支链烯丙基酯。然而,对映选择性较低,中等,明显低于 COP 家族的钯环配合物所实现的对映选择性。计算研究支持了类似于观察到的 COP 催化剂的反乙酰氧基钯化/顺脱钯化机制。计算研究进一步表明,在手性 C,N-钯环的碳配体附近优化空间位阻,而不是在氮杂环附近,是未来开发改进的该主题对映选择性催化剂的方向。