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Ultra-high molecular weight linear coordination polymers with terpyridine ligands

机译:具有三联吡啶配体的超高分子量线性配位聚合物

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摘要

Ultra-high molecular weight (UHMW, Mn > 1000 kDa) polymeric drift control adjuvants (DCAs) for agricultural spraying are prone to mechanical degradation and rapidly lose performance. To overcome this, we have designed linear coordination polymers (LCPs) composed of 400 kDa telechelic bis-terpyridine end-functionalised polyacrylamide units, which ‘self-heal’ upon shearing through reformation of coordination bonds. After addition of Fe(ii) to dilute aqueous solutions of the terpyridine telechelics, UHMW LCPs were obtained as demonstrated by UV-vis spectroscopy, MALS GPC and intrinsic viscosity measurements. Importantly, these UHMW LCPs were shown to function as effective DCAs, reducing the formation of fine ‘driftable’ droplets during spray testing at concentrations as low as 100 ppm. Following mechanically-induced coordination bond-scission, the UHMW LCPs were found to recover up to 90% of their performance compared to un-sheared samples, at a rate dependent on the transition metal ion used to form the complex.
机译:用于农业喷涂的超高分子量(UHMW,Mn> 1000 kDa)聚合物漂移控制辅助剂(DCA)易于机械降解并迅速失去性能。为了克服这个问题,我们设计了由400 kDa远螯双端吡啶官能化聚丙烯酰胺单元组成的线性配位聚合物(LCP),该配位在通过配位键的重塑剪切后会“自我修复”。在将Fe(ii)添加到三联吡啶遥螯剂的稀水溶液中后,获得UHMW LCP,如通过紫外可见光谱,MALS GPC和特性粘度测量所证明的。重要的是,这些超高分子量LCP表现出有效的DCA功能,可在低至100 ppm的浓度的喷雾测试过程中减少细微的“可滴落”液滴的形成。机械诱导的配位键断裂后,与未剪切的样品相比,发现UHMW LCP可恢复其性能的高达90%,其速率取决于用于形成配合物的过渡金属离子。

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