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首页> 外文期刊>ACS applied materials & interfaces >Highly Water-Stable Novel Lanthanide Wheel Cluster Organic Frameworks Featuring Coexistence of Hydrophilic Cagelike Chambers and Hydrophobic Nanosized Channels
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Highly Water-Stable Novel Lanthanide Wheel Cluster Organic Frameworks Featuring Coexistence of Hydrophilic Cagelike Chambers and Hydrophobic Nanosized Channels

机译:高度水稳定的新型镧系元素轮簇有机框架,具有亲水性圆角腔室和疏水性纳米型通道的共存

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摘要

In attempts to investigate the potential luminescent sensing materials for sensitive detection of environmental pollutants, a new family of lanthanide wheel cluster organic frameworks (Ln-WCOFs) UJN-Ln4 has been constructed by employing one of the cycloalkane dicarboxylic acid derivatives. Adopting different conformations, the ligand links Ln(4) second building units (SBUs) and Ln(24) tertiary building units (TBUs) to form a unique wheel cluster layer-pillared 3D framework featuring the coexistence of hydrophobic nanosized channels and trigonal antiprism arrays with hydrophilic cagelike chambers. Apart from charming structures, isostructural UJN-Ln4 displays interesting porous, water-stable features. Systematic luminescence studies demonstrate that solvent water molecules can enhance the emission intensity of solid-state UJN-Eu4. Acting as a recyclable luminescent probe, water-stable luminescent UJN-Eu4 exhibits superior turn-off detection for Fe3+ and Cu2+ ions in aqueous solutions. Due to the nanosized hydrophobic channels, UJN-Eu4 also shows highly sensitive sensing of sodium dodecyl benzenesulfonate (SDBS) via luminescence "turn-on" respondence, representing the first example of quantitatively detecting SDBS in aqueous solutions by employing luminescent lanthanide frameworks as fluorescent sensors. The results also open up the exploration of novel luminescent Ln-WCOFs exhibiting unique applications in sensitive detecting of harmful pollutants in aquatic environments.
机译:在试图研究环境污染物的敏感性检测的潜在发光感测材料中,通过采用环烷烃二羧酸衍生物之一构建了一种新的镧系轮基团组织有机骨架(LN-WCOFS)UJN-LN4。采用不同的构象,配体链接LN(4)第二建筑单元(SBUS)和LN(24)三级建筑单元(TBUS),形成独特的轮子簇层柱柱柱柱,具有疏水性纳米型通道和Trigonal Antiprism阵列的共存用亲水性圆角腔室。除了迷人的结构外,Isostrontucture UJN-LN4显示有趣的多孔,水稳定的特点。系统发光研究表明,溶剂水分子可以增强固态UJN-EU4的发射强度。用作可回收发光探针,水稳定的发光UJN-EU4在水溶液中表现出Fe3 +和Cu2 +离子的卓越的开关检测。由于纳米疏松通道,UJN-EU4还通过发光“开启”反应显示十二烷基苯磺酸钠(SDB)的高敏感性,通过使用发光镧系元素作为荧光传感器来定量检测水溶液中SDBS的第一例。结果还开辟了新型发光LN-WCOF的探索,其在水生环境中敏感检测敏感检测中的独特应用。

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