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首页> 外文期刊>Small >Hyperfast Water Transport through Biomimetic Nanochannels from Peptide-Attached (pR)-pillar[5]arene
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Hyperfast Water Transport through Biomimetic Nanochannels from Peptide-Attached (pR)-pillar[5]arene

机译:超快速水通过肽附着的杀菌纳米烷基(PR) - Pillar [5]芳烃

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摘要

Synthetic water channels offer great promise to replace natural aquaporins (AQPs) for making new-generation biomimetic membranes for water treatment. However, the water permeability of the current synthetic water channels is still far below that of AQPs. Here, peptide-attached (pR)-pillar[5]arene (pR-PH) channels are reported to mimic the high permeability of AQPs. It is demonstrated that the pR-PH channels with an open pore can transport water smoothly and efficiently. The pR-PH channels are competitive with AQPs in terms of water permeability and are much superior to diastereomer peptide-attached (pS)-pillar[5]arene (pS-PH) and other reported synthetic water channels. The exceptional water-transport properties of the pR-PH channels are further demonstrated in a composite polymeric membrane that incorporates the nanochannels into the top selective layer. This membrane gives a significantly improved water flux while retaining high salt rejection. The results establish a tangible foundation for developing highly efficient artificial water channel-based biomimetic membrane for water purification applications.
机译:合成水通道提供了替代自然水素(AQP)来制作用于制造用于水处理的新型仿生膜的许可。然而,目前合成水通道的水渗透率仍远低于AQP的渗透率。这里,据报道肽附着的(PR) - 玻璃晶(PR)芳烃(PR-pH)通道模拟AQP的高渗透性。结果证明,具有开放孔的PR-PH通道可以平稳且有效地运输水。 PR-PH通道在水渗透性方面与AQP具有竞争力,并且远映异构体肽附着(PS)-PillAR [5]芳烃(PS-PH)和其他报告的合成水通道。在复合聚合物膜中进一步证明了PR-pH通道的特殊水传输性能,该复合聚合物膜将纳米纳米夹入顶部选择层。该膜在保持高盐排出的同时给予显着改善的水通量。结果为开发高效的人工水通道的仿生液体纯化应用建立了有形基础。

著录项

  • 来源
    《Small》 |2019年第6期|共6页
  • 作者单位

    Singapore Membrane Technology Centre Nanyang Environment and Water Research Institute Nanyang Technological University Singapore 637141 Singapore;

    Singapore Membrane Technology Centre Nanyang Environment and Water Research Institute Nanyang Technological University Singapore 637141 Singapore;

    Singapore Membrane Technology Centre Nanyang Environment and Water Research Institute Nanyang Technological University Singapore 637141 Singapore;

    Division of Chemistry and Biological Chemistry School of Physical and Mathematical Sciences Nanyang Technological University Singapore 637371 Singapore;

    School of Biological Sciences Nanyang Technological University Singapore 637551 Singapore;

    Singapore Membrane Technology Centre Nanyang Environment and Water Research Institute Nanyang Technological University Singapore 637141 Singapore;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 特种结构材料;
  • 关键词

    diastereomers; pillar5arene; pores; synthetic water nanochannels; water permeability;

    机译:非对映异构体;支柱[5]芳纶;毛孔;合成水纳米南京;水渗透性;

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