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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Precise nanopore tuning for a high-throughput desalination membrane via co-deposition of dopamine and multifunctional POSSf
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Precise nanopore tuning for a high-throughput desalination membrane via co-deposition of dopamine and multifunctional POSSf

机译:通过共沉积多巴胺和多功能POSSF的高通量脱盐膜进行精确的纳米孔调节

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摘要

The demand for fractionating organic molecules and salt ions via a membrane is increasing in various industries, but the sub-nanoscale difference in solute size makes it a critical challenge. Herein, amino-functionalized polyhedral oligomeric silsesquioxane (POSS) nanoparticles were employed as a molecular-level regulator to manipulate the nanopores of a polydopamine (PDA) membrane via a facile co-deposition process. By physical intercalation and chemical bonding of multifunctional POSS, increased nanoporosity was achieved within a narrow mean nanopore size range of 1.04-1.07 nm. The optimized POSS-PDA/PAN membrane exhibited desirable dye rejection (>90%) and salt permeation (>90%) with a high permeance of 1099 L m~(-2) h~(-1) MPa~(-1), which was 2-4 times higher than that of previously reported membranes with a similar dye rejection. Additionally, the rigid cage-like POSS nanoparticles cross-linked with the PDA membrane contributed to the reinforced alkali and compaction resistance. The synergy of mussel-inspired chemistry and multifunctional nanomaterials provided a novel strategy to engineer nanoporous membranes with a favorable physiochemical nanostructure for efficient and selective transport of both molecules and ions.
机译:通过膜分馏的对有机分子和盐离子的需求在各个行业中增加,但是溶质大小的亚纳米级差异使其成为一个关键挑战。在此,氨基官能化多面体低聚倍半硅氧烷(POSS)纳米颗粒用作分子水平调节剂,通过容易共沉积方法操纵多胺(PDA)膜的纳米孔。通过物理插层和化学键合多功能POLD,在1.04-1.07nm的狭窄平均纳米孔尺寸范围内实现增加的纳米孔。优化的POSS-PDA / PAN膜表现出理想的染料排斥(> 90%)和盐渗透(> 90%),具有1099 L m〜(-2)H〜(-1)MPa〜(-1)的高渗透性,这比先前报告的膜具有类似的染料抑制的2-4倍。另外,与PDA膜交联的刚性笼状纳米颗粒有助于增强碱和压实抗性。贻贝灵感化学和多功能纳米材料的协同作用为工程纳米多孔膜具有良好的理化纳米结构,提供了一种新的策略,用于有效和选择性地运输分子和离子。

著录项

  • 来源
  • 作者

    Xinda You; Hong Wu; Yanlei Su;

  • 作者单位

    Key Laboratory for Green Chemical Technology School of Chemical Engineering and Technology Tianjin University Tianjin 300072 China;

    Key Laboratory for Green Chemical Technology School of Chemical Engineering and Technology Tianjin University Tianjin 300072 China;

    Key Laboratory for Green Chemical Technology School of Chemical Engineering and Technology Tianjin University Tianjin 300072 China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学;
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