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首页> 外文期刊>ACS Macro Letters >Phosphate-Based Cross-Linked Polymers from lodo-ene Photopolymerization: Tuning Surface Wettability through Thiol-ene Chemistry
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Phosphate-Based Cross-Linked Polymers from lodo-ene Photopolymerization: Tuning Surface Wettability through Thiol-ene Chemistry

机译:来自Lodo-ene光聚合的磷酸基交联聚合物:通过硫醇 - 烯化学调节表面润湿性

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摘要

Motivated by the various reported potential applications of poly(phosphine oxide) materials, a visible light photoinitiated iodo-ene reaction was successfully employed in network polymerization between the phosphorus-containing multifunctional monomer, tris(allyloxymethyl)phosphine oxide (TAOPO), and diiodoperfluorobutane. The cross-linked poly-(phosphine oxide) network exhibited a higher glass transition temperature than a similarly cross-linked polymer formulated with trimethylolpropane triallyl ether (TMPTAE). Interestingly, the TMPTAE/DIPFB cross-linked polymer, changed color from clear to yellow within 10 min of exposure to air, whereas the cross-linked poly(phosphine oxide) underwent a similar change only upon heating. Upon investigation, it was determined that alkenes were generated within the polymer network, presumably via elimination, accounting for the observed color. These double bonds, formed in the polymer matrix, permitted surface modification via radical thiol-ene reaction. The successful surface functionalization with PEG-SH resulted in increasing the surface wettability. Additionally, the phosphorus-containing network polymer with double bonds in the polymer matrix showed shape memory capability, this representing an exciting and versatile materials platform.
机译:通过各种报道的聚(氧化膦)材料的潜在应用,在含磷的多官能单体,Tris(烯丙氧基甲基)氧化膦(Taopo)和二碘氟醚和二碘代氟丁烷之间成功地用于网络聚合中的可见光光灭绝碘烯反应。交联的聚 - (氧化膦)网络具有比与三羟甲基丙烷三乙烷醚(TMPTAE)配制的类似交联聚合物更高的玻璃化转变温度。有趣的是,TMPTAE / DIPFB交联聚合物,在暴露于空气的10分钟内将颜色变为黄色至黄色,而交联聚(膦醚)仅在加热时进行类似的变化。在研究时,确定在聚合物网络中产生烯烃,可能通过消除,占观察的颜色。在聚合物基质中形成的这些双键,通过自由基硫醇反应进行表面改性。用PEG-SH成功的表面官能化导致表面润湿性增加。另外,含磷的网络聚合物具有双键在聚合物基质中显示出形状的记忆能力,这表示令人兴奋和多功能的材料平台。

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