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首页> 外文期刊>Journal of the American Chemical Society >Living Radical Polymerizations with Germanium, Tin, and Phosphorus Catalysts - Reversible Chain Transfer Catalyzed Polymerizations (RTCPs)
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Living Radical Polymerizations with Germanium, Tin, and Phosphorus Catalysts - Reversible Chain Transfer Catalyzed Polymerizations (RTCPs)

机译:锗,锡和磷催化剂的活性自由基聚合-可逆链转移催化聚合(RTCP)

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摘要

A novel class of living radical polymerizations with germanium, tin, and phosphorus catalysts were developed. The polymerizations are based on a new reversible activation mechanism, Reversible chain Transfer (RT) catalysis. Low-polydispersity (M_w/M_n ≈ 1.1-1.3) polystyrene, poly(methyl methacrylate), poly(glycidyl methacrylate), and poly(2-hydroxyethyl methacrylate) with predicted molecular weight were obtained with fairly high conversion in a fairly short time. The pseudo-first-order activation rate constant k_(act) for the styrene/Gel_4 (catalyst) system was large enough, even with a small amount of Gel_4, explaining why the system provides low-polydispersity polymers from an early stage of polymerization. The retardation in the polymerization rate observed for the styrene/Gel_4 system was kinetically proven to be mainly due to the cross-termination between the propagating radical with Gel_3~*. Attractive features of the germanium, tin, and phosphorus catalysts include their high reactivity hence small amounts (1-10 mM) being required under relatively mild conditions (at 60-100 ℃), high solubility in organic media without ligands, insensitivity to air hence sample preparation being allowed in the air, and minor color and smell. The germanium and phosphorus catalysts may also be attractive for their low toxicity. The phosphorus catalysts may also be attractive for their low cost.
机译:开发了一种新型的带有锗,锡和磷催化剂的活性自由基聚合。聚合基于新的可逆活化机制,可逆链转移(RT)催化。获得具有预期分子量的低多分散度(M_w / M_n≈1.1-1.3)聚苯乙烯,聚甲基丙烯酸甲酯,聚甲基丙烯酸缩水甘油酯和聚甲基丙烯酸2-羟乙酯,并在相当短的时间内获得了相当高的转化率。即使少量的Gel_4,苯乙烯/ Gel_4(催化剂)体系的拟一级活化速率常数k_(act)也足够大,这解释了为什么该体系从聚合初期就提供了低多分散性聚合物。在动力学上证明,对于苯乙烯/ Gel_4体系观察到的聚合速率的延迟主要是由于在增长的自由基与Gel_3〜*之间的交叉终止。锗,锡和磷催化剂的吸引人的特点包括它们的高反应活性,因此在相对温和的条件下(60-100℃)需要少量(1-10 mM),在没有配体的有机介质中溶解度高,因此对空气不敏感允许在空气中进行样品制备,且颜色和气味较小。锗和磷催化剂也因其低毒性而具有吸引力。磷催化剂也可能因其低成本而具有吸引力。

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