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Combinatorial Low-Volume Synthesis of Well-Defined Polymers by Enzyme Degassing

机译:酶法脱气的组合小体积合成精细定义的聚合物

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摘要

The synthesis of well-defined polymers in a low-volume, combinatorial fashion has long been a goal in polymer chemistry. Here, we report the preparation of a wide range of highly controlled homo and block co-polymers by Enz-RAFT (enzyme-assisted reversible addition-fragmentation chain transfer) polymerization in microtiter plates in the open atmosphere. The addition of 1m glucose oxidase (GOx) to water/solvent mixtures enables polymerization reactions to proceed in extremely low volumes (40L) and low radical concentrations. This procedure provides excellent control and high conversions across a range of monomer families and molecular weights, thus avoiding the need to purify for screening applications. This simple technique enables combinatorial polymer synthesis in microtiter plates on the benchtop without the need of highly specialized synthesizers and at much lower volumes than is currently possible by any other technique.
机译:长期以来,以小体积,组合方式合成定义明确的聚合物一直是聚合物化学的目标。在这里,我们报道了通过Enz-RAFT(酶辅助可逆加成-断裂链转移)聚合反应在开放式大气中在微量滴定板上制备各种高度受控的均聚物和嵌段共聚物。在水/溶剂混合物中添加1m葡萄糖氧化酶(GOx)可使聚合反应以极低的体积(40L)和低的自由基浓度进行。该程序可在一系列单体族和分子量范围内提供出色的控制效果和高转化率,从而避免了为筛选应用而纯化的麻烦。这种简单的技术可以在台式微量滴定板中进行组合聚合物的合成,而无需高度专业化的合成器,并且其体积比目前任何其他技术都低得多。

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