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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Embedding dopamine nanoaggregates into a poly(dimethylsiloxane) membrane to confer controlled interactions and free volume for enhanced separation performance
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Embedding dopamine nanoaggregates into a poly(dimethylsiloxane) membrane to confer controlled interactions and free volume for enhanced separation performance

机译:将多巴胺纳米聚集体嵌入聚二甲基硅氧烷膜中,以提供受控的相互作用和自由体积,以增强分离性能

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摘要

In this study, a series of hybrid membranes with high separation performance and superior swelling-resistance were fabricated by incorporating metal ion-chelated dopamine nanoaggregates into a poly(dimethylsiloxane) (PDMS) bulk matrix membrane. The concomitant hydrogen bond, metal-organic coordination and 7r-complexation interactions render the synergy of a favorable free volume property, reinforced chain rigidity and facilitated transport function within the membranes. The membranes displayed simultaneously enhanced permeation flux and enrichment factors when utilized for model gasoline separation. Especially, when the weight fraction of dopamine/Cu reached 5.0 wt%, the membrane displayed an optimum separation performance with a permeation flux of 7.42 kg m~(-2) h~(-1) (2.7 times as much as that of the PDMS control membrane) and an enrichment factor of 4.81 (11% more than that of the PDMS control membrane). Thanks to the elevated cohesive energy and the chain extension effect, the swelling degree of the PDMS-dopamine/Cu membranes decreased remarkably with the dopamine/Cu content. This study may provide a novel route to the design and fabrication of robust, high-performance hybrid membranes to meet diverse energy and environment-related application requirements.
机译:在这项研究中,通过将金属离子螯合的多巴胺纳米聚集体掺入聚(二甲基硅氧烷)(PDMS)本体基质膜中,制备了一系列具有高分离性能和优异的抗溶胀性的杂化膜。伴随的氢键,金属-有机配位和7r-络合相互作用提供了良好的自由体积特性,增强的链刚性和促进的膜内运输功能的协同作用。当用于模型汽油分离时,这些膜同时显示出增强的渗透通量和富集因子。尤其是当多巴胺/铜的重量分数达到5.0 wt%时,该膜表现出最佳的分离性能,其渗透通量为7.42 kg m〜(-2)h〜(-1)(是膜的渗透通量的2.7倍)。 PDMS控制膜)和4.81的富集因子(比PDMS控制膜高11%)。由于提高的内聚能和扩链效果,PDMS-多巴胺/铜膜的溶胀度随多巴胺/铜含量的增加而显着降低。这项研究可能为设计和制造坚固,高性能的混合膜提供新颖的途径,以满足与能源和环境相关的各种应用需求。

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