Jagusch Thomas, Gais Hans-Joachim, Bondarev Oleg
Institut für Organische Chemie der Rheinisch-Westfälischen Technischen Hochschule (RWTH) Aachen, Prof.-Pirlet-Str. 1, 52056 Aachen, Germany.
J Org Chem. 2004 Apr 16;69(8):2731-6. doi: 10.1021/jo030340d.
Described is an asymmetric synthesis of cyclic and acyclic allylic S-aryl and S-alkyl sulfones through a highly selective palladium(0)-catalyzed 1,3-rearrangement of racemic allylic sulfinates. Treatment of racemic cyclic and acyclic allylic S-tolyl- and S-tert-butylsulfinates with Pd(2)(dba)(3).CHCl(3) as precatalyst and N,N'-(1R,2R)-1,2-cyclohexanediylbis[2-(diphenylphosphino)benzamide] as ligand for the palladium atom afforded the corresponding isomeric allylic S-tolyl and S-tert-butyl sulfones of 93-99% ee in 82-96% yield. The rearrangement of the allylic sulfinates most likely proceeds in an intermolecular fashion via formation of a cationic pi-allylpalladium complex and the sulfinate ion. The racemic allylic sulfinates were obtained from the corresponding racemic alcohols and racemic tolylsulfinyl chloride and racemic tert-butylsulfinyl chloride, respectively, in high yields. Rearrangement of the racemic tert-butylsulfinic acid 2-cyclooct-1-enyl ester with Pd(2)(dba)(3).CHCl(3) and the bisphosphane was accompanied by a highly selective kinetic resolution of the substrate and gave at 50% conversion the (R)-configured sulfinate as mixture of the S(S) and R(S) diastereomers of 92% ee and 85% ee and the (S)-configured 3-tert-butylsulfonyl cyclooctene sulfone 15a with 98% ee in almost quantitative yields.
描述了一种通过外消旋烯丙基亚磺酸盐的高选择性钯(0)催化的1,3-重排反应,不对称合成环状和非环状烯丙基S-芳基和S-烷基砜的方法。以外消旋环状和非环状烯丙基S-甲苯基和S-叔丁基亚磺酸盐为原料,以Pd₂(dba)₃·CHCl₃为预催化剂,N,N'-(1R,2R)-1,2-环己二基双[2-(二苯基膦基)苯甲酰胺]为钯原子配体,得到相应的异构烯丙基S-甲苯基和S-叔丁基砜,对映体过量值为93 - 99%,产率为82 - 96%。烯丙基亚磺酸盐的重排最有可能通过形成阳离子π-烯丙基钯络合物和亚磺酸根离子以分子间方式进行。外消旋烯丙基亚磺酸盐分别由相应的外消旋醇与外消旋甲苯亚磺酰氯和外消旋叔丁基亚磺酰氯高产率制得。外消旋叔丁基亚磺酸2-环辛-1-烯基酯与Pd₂(dba)₃·CHCl₃和双膦烷的重排反应伴随着底物的高选择性动力学拆分,在50%转化率时得到(R)-构型的亚磺酸盐,其为S(S)和R(S)非对映异构体的混合物,对映体过量值分别为92%和85%,以及(S)-构型的3-叔丁基磺酰基环辛烯砜15a,对映体过量值为98%,产率几乎定量。