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含吸电子配体的均相和多相钌基复分解催化剂的合成与反应活性

Synthesis and reactivity of homogeneous and heterogeneous ruthenium-based metathesis catalysts containing electron-withdrawing ligands.

作者信息

Krause Jens O, Nuyken Oskar, Wurst Klaus, Buchmeiser Michael R

机构信息

Lehrstuhl für Makromolekulare Stoffe, Technische Universität Munich, Lichtenbergstrasse 4, 85747 Garching, Germany.

出版信息

Chemistry. 2004 Feb 6;10(3):777-84. doi: 10.1002/chem.200305031.

Abstract

The synthesis and heterogenization of new Grubbs-Hoveyda type metathesis catalysts by chlorine exchange is described. Substitution of one or two chlorine ligands with trifluoroacetate and trifluoromethanesulfonate was accomplished by reaction of [RuCl(2)([double bond]CH-o-iPr-O-C(6)H(4))(IMesH(2))] (IMesH(2) = 1,3-bis(2,4,6-trimethylphenyl)-4,5-dihydroimidazol-2-ylidene) with the silver salts CF(3)COOAg and CF(3)SO(3)Ag, respectively. The resulting compounds, [Ru(CF(3)SO(3))(2)([double bond]CH-o-iPr-O-C(6)H(4))(IMesH(2))] (1), [RuCl(CF(3)SO(3))([double bond]CH-o-iPr-O-C(6)H(4))(IMesH(2))] (2), and [Ru(CF(3)CO(2))(2)([double bond]CH-o-iPr-O-C(6)H(4))(IMesH(2))] (3) were found to be highly active catalysts for ring-closing metathesis (RCM) at elevated temperature (45 degrees C), exceeding known ruthenium-based catalysts in catalytic activity. Turn-over numbers (TONs) up to 1800 were achieved in RCM. Excellent yields were also achieved in enyne metathesis and ring-opening cross metathesis using norborn-5-ene and 7-oxanorborn-5-ene-derivatives. Even more important, 3 was found to be highly active in RCM at room temperature (20 degrees C), allowing TONs up to 1400. Heterogeneous catalysts were synthesized by immobilizing [RuCl(2)([double bond]CH-o-iPr-O-C(6)H(4))(IMesH(2))] on a perfluoroglutaric acid derivatized polystyrene-divinylbenzene (PS-DVB) support (silver form). The resulting supported catalyst [RuCl(polymer-CH(2)-O- CO-CF(2)-CF(2)-CF(2)-COO)([double bond]CH-o-iPr-O-C(6)H(4))(IMesH(2))] (5) showed significantly reduced activities in RCM (TONs = 380) compared with the heterogeneous analogue of 3. The immobilized catalyst, [Ru(polymer-CH(2)-O-CO-CF(2)-CF(2)-CF(2)-COO)(CF(3)CO(2))([double bond]CH-o-iPr-O-C(6)H(4))(IMesH(2))] (4) was obtained by substitution of both Cl ligands of the parent Grubbs-Hoveyda catalyst by addition of CF(3)COOAg to 5. Compound 4 can be prepared in high loadings (160 mg catalyst g(-1) PS-DVB) and possesses excellent activity in RCM with TONs up to 1100 in stirred-batch RCM experiments. Leaching of ruthenium into the reaction mixture was unprecedentedly low, resulting in a ruthenium content <70 ppb (ng g(-1)) in the final RCM-derived products.

摘要

本文描述了通过氯交换合成新型Grubbs-Hoveyda型复分解催化剂及其多相化过程。用三氟乙酸盐和三氟甲磺酸盐取代一个或两个氯配体,分别是通过[RuCl₂(=CH-o-iPr-O-C₆H₄)(IMesH₂)](IMesH₂ = 1,3-双(2,4,6-三甲基苯基)-4,5-二氢咪唑-2-亚基)与银盐CF₃COOAg和CF₃SO₃Ag反应实现的。所得化合物[Ru(CF₃SO₃)₂(=CH-o-iPr-O-C₆H₄)(IMesH₂)](1)、[RuCl(CF₃SO₃)(=CH-o-iPr-O-C₆H₄)(IMesH₂)](2)和[Ru(CF₃CO₂)₂(=CH-o-iPr-O-C₆H₄)(IMesH₂)](3)在高温(45℃)下是用于关环复分解(RCM)的高活性催化剂,其催化活性超过已知的钌基催化剂。在RCM中实现了高达1800的转化数(TONs)。使用降冰片-5-烯和7-氧杂降冰片-5-烯衍生物进行烯炔复分解和开环交叉复分解时也获得了优异的产率。更重要的是,发现3在室温(20℃)下对RCM具有高活性,TONs可达1400。通过将[RuCl₂(=CH-o-iPr-O-C₆H₄)(IMesH₂)]固定在全氟戊二酸衍生的聚苯乙烯-二乙烯基苯(PS-DVB)载体(银形式)上合成了多相催化剂。所得负载型催化剂[RuCl(聚合物-CH₂-O-CO-CF₂-CF₂-CF₂-COO)(=CH-o-iPr-O-C₆H₄)(IMesH₂)](5)在RCM中的活性(TONs = 380)与3的多相类似物相比显著降低。通过向5中加入CF₃COOAg取代母体Grubbs-Hoveyda催化剂的两个Cl配体,得到负载型催化剂[Ru(聚合物-CH₂-O-CO-CF₂-CF₂-CF₂-COO)(CF₃CO₂)(=CH-o-iPr-O-C₆H₄)(IMesH₂)](4)。化合物4可以高负载量制备(160 mg催化剂 g⁻¹ PS-DVB)并且在搅拌间歇RCM实验中对RCM具有优异的活性,TONs高达1100。钌向反应混合物中的浸出量极低,最终RCM衍生产品中的钌含量<70 ppb(ng g⁻¹)。

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