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首页> 外文期刊>Inorganica Chimica Acta >Ligand exchange and abstraction reactions involving titanium isopropoxide with tris(pentafluorophenyl)borane and -alane: ramifications for ring-opening polymerization of propylene oxide
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Ligand exchange and abstraction reactions involving titanium isopropoxide with tris(pentafluorophenyl)borane and -alane: ramifications for ring-opening polymerization of propylene oxide

机译:涉及异丙氧基钛与三(五氟苯基)硼烷和-烷烃的配体交换和抽象反应:环氧丙烷开环聚合的衍生物

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摘要

In situ mixing of Ti((OPr)-Pr-i)(4) and B(C6F5)(3) generates a very efficient catalyst system for ring-opening polymerization (ROP) of propylene oxide (PO) with a turnover frequency (TOF) >1350/h, whereas the mixture of Ti((OPr)-Pr-i)(4) and Al(C6F5)(3) is inactive for the same polymerization. The inactivity of the Ti((OPr)-Pr-i)(4)/Al(C6F5)(3) mixture is due to the formation of the stable isopropoxy-bridged bimetallic species Ti((OPr)-Pr-i)(3)(mu-(OPr)-Pr-i)Al(C6F5)(3) (1), the structure of which has been confirmed by X-ray diffraction. The products of the Ti((OPr)-Pr-i)(4) + B(C6F5)(3) reaction, however, depend on the Ti((OPr)-Pr-i)(4):B(C6F5)(3) ratio. The 1: 1 ratio reaction in toluene at ambient temperature is rapid and produces the ligand exchange products: Ti((OPr)-Pr-i)(3)C6F5 and (PrOB)-Pr-i(C6F5)(2) (2), along with a small amount of ((PrO)-Pr-i)(2)BC6F5. The two resulting boranes are inseparable by recrystallization or vacuum distillation, and the formation of the undesired ((PrO)-Pr-i)(2)BC6F5 is either significantly enhanced upon heating the reaction in toluene to 80degreesC or nearly exclusive by carrying out the reaction in THF. By employing 1.2 equiv. of B(C6F5)(3) in the reaction with Ti((OPr)-Pr-i)(4), however, the formation of ((PrO)-Pr-i)(2)BC6F5 is suppressed, enabling the isolation of the new borane 2 in its pure state. The excess of B(C6F5)3 added to the reaction apparently slows down the exchange reaction by stabilizing the intermediate Ti((OPr)-Pr-i)(3)(mu-(OPr)-Pr-i)B(C6F5)(3) (4), as shown by the 1:2 Ti((OPr)-Pr-i)(4):B(C6F5)(3) reaction which initially forms the ligand abstraction product 4 followed by subsequent slow ligand exchange to give the final products Ti((OPr)-Pr-i)(3)C6F5 and 2. The studies of these individual reactions, in combination with control polymerization runs, reveal that the active species responsible for the catalytic activity of the Ti((OPr)-Pr-i)(4)/B(C6F5)(3) mixture is the isopropoxy borane 2. Thus, the isolated 2, in the absence or presence of a hydroxylic initiator, serves as a very effective catalyst for the ROP of PO, producing PPOs with M-n = 2000-3000, M-w/M-n = 1.30-1.43, and TOF > 1400/h. The MALDI-TOF NIS analyses of the PPOs formed show the linear PPO structures having the initiator and water molecules as end groups, demonstrating the control over the PPO structure. (C) 2004 Elsevier B.V. All rights reserved.
机译:Ti((OPr)-Pr-i)(4)和B(C6F5)(3)的原位混合产生了非常有效的催化剂体系,用于以周转频率(1)进行环氧丙烷(PO)的开环聚合(ROP)。 TOF)> 1350 / h,而Ti((OPr)-Pr-1)(4)和Al(C6F5)(3)的混合物对于相同的聚合反应是惰性的。 Ti((OPr)-Pr-i)(4)/ Al(C6F5)(3)混合物的惰性是由于形成了稳定的异丙氧基桥联双金属物质Ti((OPr)-Pr-i)( 3)(μ-(OPr)-Pr-i)Al(C6F5)(3)(1),其结构已通过X射线衍射确认。但是Ti((OPr)-Pr-i)(4)+ B(C6F5)(3)反应的产物取决于Ti((OPr)-Pr-i)(4):B(C6F5) (3)比例。在室温下,甲苯中的1:1比例反应快速进行,并产生配体交换产物:Ti((OPr)-Pr-i)(3)C6F5和(PrOB)-Pr-i(C6F5)(2)(2 ),以及少量的(​​(PrO)-Pr-i)(2)BC6F5。通过重结晶或真空蒸馏无法分离得到的两个硼烷,不希望的((PrO)-Pr-i)(2)BC6F5的形成在甲苯中将反应加热到80°C时显着增强,或者通过进行在THF中反应。通过采用1.2当量B(C6F5)(3)与Ti((OPr)-Pr-i)(4)反应的过程中,((PrO)-Pr-i)(2)BC6F5的形成受到抑制,从而实现了分离纯硼烷2的纯净状态。通过稳定中间体Ti((OPr)-Pr-i)(3)(mu-(OPr)-Pr-i)B(C6F5),添加到反应中的过量B(C6F5)3明显减慢了交换反应。 (3)(4),如1:2 Ti((OPr)-Pr-i)(4):B(C6F5)(3)反应所示,该反应最初形成配体抽象产物4,随后缓慢进行配体交换得到最终产物Ti((OPr)-Pr-i)(3)C6F5和2。对这些单个反应的研究以及控制聚合的运行表明,负责Ti(( (OPr)-Pr-1)(4)/ B(C6F5)(3)的混合物为异丙氧基硼烷2。因此,在不存在或不存在羟基引发剂的情况下,分离出的2可以作为非常有效的催化剂PO的ROP,生成的PPO的Mn = 2000-3000,Mw / Mn = 1.30-1.43,TOF> 1400 / h。所形成的PPO的MALDI-TOF NIS分析表明,线性PPO结构具有引发剂和水分子作为端基,证明了对PPO结构的控制。 (C)2004 Elsevier B.V.保留所有权利。

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