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手性氟化 α-砜基碳负离子:对映选择性合成和亲电捕获、外消旋化动力学和结构。

Chiral fluorinated α-sulfonyl carbanions: enantioselective synthesis and electrophilic capture, racemization dynamics, and structure.

机构信息

Institute of Organic Chemistry, RWTH Aachen University, Landoltweg 1, 52074 Aachen, Germany.

出版信息

Chemistry. 2013 Mar 18;19(12):3869-97. doi: 10.1002/chem.201204014. Epub 2013 Feb 10.

Abstract

Enantiomerically pure triflones R(1) CH(R(2) )SO2 CF3 have been synthesized starting from the corresponding chiral alcohols via thiols and trifluoromethylsulfanes. Key steps of the syntheses of the sulfanes are the photochemical trifluoromethylation of the thiols with CF3 Hal (Hal=halide) or substitution of alkoxyphosphinediamines with CF3 SSCF3 . The deprotonation of RCH(Me)SO2 CF3 (R=CH2 Ph, iHex) with nBuLi with the formation of salts [RC(Me)SO2 CF3 ]Li and their electrophilic capture both occurred with high enantioselectivities. Displacement of the SO2 CF3 group of (S)-MeOCH2 C(Me)(CH2 Ph)SO2 CF3 (95 % ee) by an ethyl group through the reaction with AlEt3 gave alkane MeOCH2 C(Me)(CH2 Ph)Et of 96 % ee. Racemization of salts [R(1) C(R(2) )SO2 CF3 ]Li follows first-order kinetics and is mainly an enthalpic process with small negative activation entropy as revealed by polarimetry and dynamic NMR (DNMR) spectroscopy. This is in accordance with a Cα S bond rotation as the rate-determining step. Lithium α-(S)-trifluoromethyl- and α-(S)-nonafluorobutylsulfonyl carbanion salts have a much higher racemization barrier than the corresponding α-(S)-tert-butylsulfonyl carbanion salts. Whereas [PhCH2 C(Me)SO2 tBu]Li/DMPU (DMPU = dimethylpropylurea) has a half-life of racemization at -105 °C of 2.4 h, that of [PhCH2 C(Me)SO2 CF3 ]Li at -78 °C is 30 d. DNMR spectroscopy of amides (PhCH2 )2 NSO2 CF3 and (PhCH2 )N(Ph)SO2 CF3 gave NS rotational barriers that seem to be distinctly higher than those of nonfluorinated sulfonamides. NMR spectroscopy of [PhCH2 C(Ph)SO2 R]M (M=Li, K, NBu4 ; R=CF3 , tBu) shows for both salts a confinement of the negative charge mainly to the Cα atom and a significant benzylic stabilization that is weaker in the trifluoromethylsulfonyl carbanion. According to crystal structure analyses, the carbanions of salts {[PhCH2 C(Ph)SO2 CF3 ]Li⋅L}2 (L=2 THF, tetramethylethylenediamine (TMEDA)) and [PhCH2 C(Ph)SO2 CF3 ]NBu4 have the typical chiral Cα S conformation of α-sulfonyl carbanions, planar Cα atoms, and short Cα S bonds. Ab initio calculations of MeC(Ph)SO2 tBu and MeC(Ph)SO2 CF3 showed for the fluorinated carbanion stronger nC →σ* SCF 3 and nO →σ* SCF 3 interactions and a weaker benzylic stabilization. According to natural bond orbital (NBO) calculations of R(1) C(R(2) )SO2 R (R=tBu, CF3 ) the nC →σ*SR interaction is much stronger for R=CF3 . Ab initio calculations gave for [MeC(Ph)SO2 tBu]Li⋅2 Me2 O an O,Li,Cα contact ion pair (CIP) and for [MeC(Ph)SO2 CF3 ]Li⋅2 Me2 O an O,Li,O CIP. According to cryoscopy, [PhCH2 C(Ph)SO2 CF3 ]Li, [iHexC(Me)SO2 CF3 ]Li, and [PhCH2 C(Ph)SO2 CF3 ]NBu4 predominantly form monomers in tetrahydrofuran (THF) at -108 °C. The NMR spectroscopic data of salts [R(1) (R(2) )SO2 R(3) ]Li (R(3) =tBu, CF3 ) indicate that the dominating monomeric CIPs are devoid of Cα Li bonds.

摘要

具有对映纯的三氟甲基砜 R(1) CH(R(2) )SO2 CF3 已通过硫醇和三氟甲磺酸从相应的手性醇合成。磺烷合成的关键步骤是用 CF3 Hal(Hal=卤化物)或用 CF3 SSCF3 取代烷氧基膦二胺对硫醇进行光氟化。用 nBuLi 对 RCH(Me)SO2 CF3(R=CH2 Ph,iHex)进行脱质子化,形成盐[RC(Me)SO2 CF3 ]Li,并通过高对映选择性进行亲电捕获。通过与 AlEt3 反应,(S)-MeOCH2 C(Me)(CH2 Ph)SO2 CF3(95%ee)的 SO2 CF3 基团被乙基取代,得到 96%ee 的烷烃 MeOCH2 C(Me)(CH2 Ph)Et。盐[R(1) C(R(2) )SO2 CF3 ]Li 的外消旋化遵循一级动力学,主要是一个焓过程,旋光和动态 NMR(DNMR)光谱表明其具有较小的负活化熵。这与 Cα S 键旋转作为速控步骤是一致的。与相应的α-(S)-叔丁基磺酰基碳阴离子盐相比,α-(S)-三氟甲基和α-(S)-全氟丁基磺酰基碳阴离子盐的外消旋化障碍要高得多。PhCH2 C(Me)SO2 tBu]Li/DMPU(DMPU=二甲基丙基脲)在-105°C 下的半衰期为 2.4 h,而-78°C 下的半衰期为 30 d。PhCH2 )2 NSO2 CF3 和 PhCH2 )N(Ph)SO2 CF3 的酰胺的 DNMR 光谱给出了似乎明显高于非氟化磺酰胺的 NS 旋转障碍。PhCH2 C(Ph)SO2 R]M(M=Li,K,NBu4;R=CF3,tBu)的 NMR 光谱显示两种盐主要将负电荷限制在 Cα 原子上,并具有显著的苄基稳定化作用,而三氟甲基磺酰基碳阴离子则较弱。根据晶体结构分析,盐{[PhCH2 C(Ph)SO2 CF3 ]Li·L}2(L=2THF,四甲基乙二胺(TMEDA))和[PhCH2 C(Ph)SO2 CF3 ]NBu4 的碳阴离子具有典型的α-磺酰基碳阴离子的手性 Cα S 构象,平面 Cα 原子和短 Cα S 键。MeC(Ph)SO2 tBu](-) 和 MeC(Ph)SO2 CF3 的从头算计算显示,对于氟化碳阴离子,nC →σ* SCF3 和 nO →σ* SCF3 相互作用更强,而苄基稳定化作用较弱。根据R(1) C(R(2) )SO2 R(R=tBu,CF3)的自然键轨道(NBO)计算,nC →σ*SR 相互作用对于 R=CF3 更强。从头算计算给出了[MeC(Ph)SO2 tBu]Li·2Me2 O 的 O,Li,Cα 接触离子对(CIP)和[MeC(Ph)SO2 CF3 ]Li·2Me2 O 的 O,Li,O CIP。根据冰点测定法,PhCH2 C(Ph)SO2 CF3 ]Li、[iHexC(Me)SO2 CF3 ]Li 和[PhCH2 C(Ph)SO2 CF3 ]NBu4 在四氢呋喃(THF)中主要在-108°C 下形成单体。盐[R(1) (R(2) )SO2 R(3) ]Li(R(3) =tBu,CF3)的 NMR 光谱数据表明,占主导地位的单体 CIP 没有 Cα Li 键。

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