首页> 外文期刊>ACS applied materials & interfaces >High-Flux Oil/Water Separation with Interfacial Capillary Effect in Switchable Superwetting Cu(OH)(2)@ZIF-8 Nanowire Membranes
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High-Flux Oil/Water Separation with Interfacial Capillary Effect in Switchable Superwetting Cu(OH)(2)@ZIF-8 Nanowire Membranes

机译:具有可切换式超雨液Cu(OH)(2)(2)的界面毛细管效应的高焊剂油/水分离,ZIF-8纳米线膜

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摘要

Highly ordered architectures with roughness and porous surface are the key challenges toward developing smart superwetting membranes. We prepared switchable superwetting Cu(OH)(2)@ZIF-8 core/shell nanowire membranes for high-flux oil/water separation as well as simultaneous heavy-metal ions removal in one step. The well-defined Cu(OH)2@ZIF-8 core/shell nanowire grown on copper mesh with average length of ca. 15 mu m and diameter of ca. 162 nm exhibits high water contact angle (CA) of ca. 153 +/- 0.6 degrees. After modified by ethanol, the membrane holds the reverse superwettability with oil (dichloromethane as an example) CA of ca. 155 +/- 0.8 degrees underwater. The separation efficiencies of the membranes are higher than that of 97.2% with a remarkable flux rate higher than 90 000 L m(-2) h(-1) for the immiscible oil/water mixture. And the removal efficiency for Cr3+ ions at 10 ppb can arrive at 99.2 wt % in the toluene-in-water emulsion. The high performances of the smart superwetting membranes can be attributed to the interfacial capillary effects of the hierarchical Cu(OH)(2)@ZIF-8 core/shell nanostructures. This work may provide a new insight into the design of smart superwetting surfaces for oil/water separation and target adsorption in one step.
机译:具有粗糙度和多孔​​表面的高度有序的架构是朝着开发智能全雨膜膜的关键挑战。我们制备可切换的超雨量Cu(OH)(2)(2)(2)〜ZIF-8芯/壳纳米线膜,用于高通量油/水分离,以及同时的重金属离子在一步中除去。定义的Cu(OH)2 @ ZIF-8芯/壳纳米线在铜网上生长,具有平均约Ca. 15亩,直径的CA。 162 nm展示CA的高海接触角(CA)。 153 +/- 0.6度。通过乙醇改性后,膜用CA的油(二氯甲烷为例)保持反向超薄。水下155 +/- 0.8度。膜的分离效率高于97.2%,具有高于90000μm(-2)H(-1)的显着助熔剂速率,用于不混溶的油/水混合物。并且10 ppb在10 ppb下的Cr3 +离子的去除效率可以在水甲苯 - 水乳液中达到99.2wt%。智能全雨膜的高性能归因于分层Cu(OH)(2)〜ZIF-8核/壳纳米结构的界面毛细血管效应。这项工作可以在一步中为用于油/水分离和靶吸附的智能全雨层的设计提供新的洞察。

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  • 来源
    《ACS applied materials & interfaces》 |2018年第46期|共9页
  • 作者单位

    Anhui Univ Lab Clean Energy &

    Environm Catalysis AnHui Prov Key Lab Chem Inorgan Organ Hybrid Func Inst Phys Sci &

    Informat Technol Sch Chem &

    Chem Hefei 230601 Anhui Peoples R China;

    Anhui Univ Lab Clean Energy &

    Environm Catalysis AnHui Prov Key Lab Chem Inorgan Organ Hybrid Func Inst Phys Sci &

    Informat Technol Sch Chem &

    Chem Hefei 230601 Anhui Peoples R China;

    Sun Yat Sen Univ Guangdong Prov Key Lab Environm Pollut Control &

    Guangzhou 510006 Guangdong Peoples R China;

    Anhui Univ Lab Clean Energy &

    Environm Catalysis AnHui Prov Key Lab Chem Inorgan Organ Hybrid Func Inst Phys Sci &

    Informat Technol Sch Chem &

    Chem Hefei 230601 Anhui Peoples R China;

    Anhui Univ Lab Clean Energy &

    Environm Catalysis AnHui Prov Key Lab Chem Inorgan Organ Hybrid Func Inst Phys Sci &

    Informat Technol Sch Chem &

    Chem Hefei 230601 Anhui Peoples R China;

    Anhui Univ Lab Clean Energy &

    Environm Catalysis AnHui Prov Key Lab Chem Inorgan Organ Hybrid Func Inst Phys Sci &

    Informat Technol Sch Chem &

    Chem Hefei 230601 Anhui Peoples R China;

    Anhui Univ Lab Clean Energy &

    Environm Catalysis AnHui Prov Key Lab Chem Inorgan Organ Hybrid Func Inst Phys Sci &

    Informat Technol Sch Chem &

    Chem Hefei 230601 Anhui Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学工业;
  • 关键词

    Cu(OH)(2)@ZIF-8; nanowire membrane; switchable superwetting; capillary effect; oil/water separation;

    机译:Cu(OH)(2)@ ZIF-8;纳米线膜;可切换的超雨;毛细血管效果;油/水分离;

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