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首页> 外文期刊>Organometallics >Oxidation of olefins by palladium(II). 16. A new palladium(II)-catalyzed asymmetric chlorohydrin synthesis
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Oxidation of olefins by palladium(II). 16. A new palladium(II)-catalyzed asymmetric chlorohydrin synthesis

机译:钯(II)氧化烯烃。 16.一种新的钯(II)催化不对称氯醇合成

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摘要

Previous studies showed that palladium(II) catalysts containing a pyridine ligand give mainly ethylene chlorohydrin as a product of the oxidation of ethene in the presence of CuCl2 at [Cl-] = 0.2 M, Under the same conditions PdCl42- produced only ethanal. The replacement of pyridine by a chiral monoamine gave a catalyst which oxidized propane and methyl vinyl ketone to optically active chlorohydrins. However, the optical yields were low, with ec's of only 8-12%. The use of chelating diphosphines would be expected to greatly improve optical yields. However, the neutral catalysts containing diphosphine ligands were insoluble in the mixed H2O-THF (4/1) reaction media. The chiral ligands (2S,4S)-bis(diphenylphosphino)butane ((S,S)-BDPP), (2S,3S)-bis(diphenylphosphino)butane ((S,S)Chiraphos), and (R)-(+)-2,2'-bis(di-p-tolylphosphino)-1,1'-binaphthyl, ((R)-Tol-BINAP) were sulfonated to give water-soluble catalysts. These catalysts gave poor to modest ee's (28-76%) in the oxidation of propene, methyl vinyl ketone, and allyl phenyl ether. In II2O-THF mixed: solvents richer in TI-IF (1/2 H2O/THF), unsulfonated (R)-Tol-BINAP is soluble to some extent. Oxidation of the above olefinic substrates with this system gave the corresponding chlorohydrins with slightly higher enantioselectivities than with the sulfonated catalysts, The absolute configuration of the chlorohydrin from propane with the (R)-Tol-BINAP catalyst was R. The oxidation of 2,3-dihydrofuran gave chlorohydrins with the E conformation. These two stereochemical results are consistent with anti addition to the most stable pi-complex followed by a Pd(II)-carbon bond-breaking step which places a chloride from the coordination sphere of Pcd(II) on the carbon which is leaving. [References: 18]
机译:先前的研究表明,含有吡啶配体的钯(II)催化剂主要生成乙烯氯醇,这是在[Cl-] = 0.2 M的CuCl2存在下乙烯氧化乙烯的产物。在相同条件下,PdCl42仅产生乙醛。用手性单胺取代吡啶得到的催化剂将丙烷和甲基乙烯基酮氧化为光学活性的氯醇。但是,光学产率很低,ec仅为8-12%。螯合二膦的使用有望大大提高光学产率。但是,含有二膦配体的中性催化剂不溶于混合的H2O-THF(4/1)反应介质。手性配体(2S,4S)-双(二苯基膦基)丁烷((S,S)-BDPP),(2S,3S)-双(二苯基膦基)丁烷((S,S)Chiraphos)和(R)-(将+)-2,2'-双(二对甲苯基膦基)-1,1'-联萘基((R)-Tol-BINAP)磺化,得到水溶性催化剂。这些催化剂在丙烯,甲基乙烯基酮和烯丙基苯基醚的氧化反应中,得到的ee差(28-76%)。在II2O-THF混合溶液中:富含TI-IF(1/2 H2O / THF)的溶剂中,未磺化(R)-Tol-BINAP可以一定程度溶解。用该体系氧化上述烯烃底物得到的氯醇的对映选择性比用磺化催化剂略高。丙烷与(R)-Tol-BINAP催化剂的氯醇的绝对构型为R。2,3的氧化-二氢呋喃得到具有E构象的氯代醇。这两个立体化学结果与最稳定的pi-络合物的抗加成相符,随后是Pd(II)-碳键断裂步骤,该步骤将氯从Pcd(II)的配位域放到要离开的碳上。 [参考:18]

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