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“茶包中的催化作用”:树枝状大分子固定化双恶唑啉和三恶唑啉铜催化剂的合成、催化性能及循环利用

"Catalysis in a tea bag": synthesis, catalytic performance and recycling of dendrimer-immobilised bis- and trisoxazoline copper catalysts.

作者信息

Gaab Manuela, Bellemin-Laponnaz Stéphane, Gade Lutz H

机构信息

Anorganisch-Chemisches Institut, Universität Heidelberg, Im Neuenheimer Feld 270, 69120 Heidelberg, Germany.

出版信息

Chemistry. 2009;15(22):5450-62. doi: 10.1002/chem.200900504.

Abstract

Bis- and trisoxazolines (BOX and trisox), containing a linker unit in the ligand backbone that allows their covalent attachment to carbosilane dendrimers, have been employed as polyfunctional ligands for recyclable Cu(II) Lewis acid catalysts that were immobilised in a membrane bag. The oxazolines contained an alkynyl unit attached to their backbone that was deprotonated with LDA or BuLi and then reacted with the chlorosilyl termini of zeroth-, first- and second-generation carbosilane dendrimers in the presence of TlPF(6). The functionalised dendritic systems were subsequently separated from excess ligand by way of dialysis. The general catalytic potential of these systems was assessed by studying two benchmark reactions, the alpha-hydrazination of a beta-keto ester as well as the Henry reaction of 2-nitrobenzaldehyde with nitromethane. For both reactions the bisoxazoline-based catalysts displayed superior selectivity and, in particular, catalyst activity. The latter was interpreted as being due to the hindered decoordination of the third oxazoline unit, the key step in the generation of the active catalyst, in the immobilised trisox-copper complexes. Solutions of the second-generation dendrimer catalysts were placed in membrane bags, fabricated from commercially available dialysis membranes, with the purpose of catalyst recycling based on dialysis. Overall, the supported BOX catalyst gave good and highly reproducible results throughout the study, whereas the performance of the trisox dendrimer system decreased monotonically. The reason for the different behaviour is the markedly lower activity of trisox-based catalysts relative to those based on the BOX ligand. This necessitated an increased reaction time for each cycle of the trisox derivatives, resulting in higher levels of catalyst leaching, which was attributed to a modification of the structure of the membrane by its exposure to the solvent trifluoroethanol at 40 degrees C.

摘要

双恶唑啉和三恶唑啉(BOX和三恶唑)在配体主链中含有一个连接单元,使其能够共价连接到碳硅烷树枝状大分子上,已被用作可回收铜(II)路易斯酸催化剂的多功能配体,该催化剂固定在膜袋中。恶唑啉在其主链上含有一个炔基单元,该炔基单元用LDA或BuLi去质子化,然后在TlPF(6)存在下与零代、一代和二代碳硅烷树枝状大分子的氯硅烷基末端反应。随后通过透析将功能化的树枝状体系与过量的配体分离。通过研究两个基准反应,即β-酮酯的α-肼化反应以及2-硝基苯甲醛与硝基甲烷的亨利反应,评估了这些体系的一般催化潜力。对于这两个反应,基于双恶唑啉的催化剂表现出优异的选择性,尤其是催化剂活性。后者被解释为是由于固定化的三恶唑-铜配合物中第三个恶唑啉单元的去配位受阻,这是活性催化剂生成的关键步骤。将第二代树枝状大分子催化剂的溶液置于由市售透析膜制成的膜袋中,目的是基于透析进行催化剂回收。总体而言,在整个研究过程中,负载型BOX催化剂给出了良好且高度可重复的结果,而三恶唑树枝状大分子体系的性能则单调下降。行为差异的原因是基于三恶唑啉的催化剂相对于基于BOX配体的催化剂活性明显较低。这使得三恶唑衍生物的每个循环都需要延长反应时间,导致更高水平的催化剂浸出,这归因于膜在40℃下暴露于溶剂三氟乙醇时其结构发生了改变。

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