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两性离子表面活性剂胶束导向的含铕多金属氧酸盐自组装成具有增强发光和pH响应性的有序纳米带。

Zwitterionic Surfactant Micelle-Directed Self-Assembly of Eu-Containing Polyoxometalate into Organized Nanobelts with Improved Emission and pH Responsiveness.

作者信息

Lei Nana, Feng Lei, Chen Xiao

机构信息

Key Laboratory of Colloid and Interface Chemistry, Ministry of Education , Shandong University , Jinan 250100 , China.

出版信息

Langmuir. 2019 Mar 26;35(12):4370-4379. doi: 10.1021/acs.langmuir.9b00261. Epub 2019 Mar 12.

Abstract

Recently, hybrid coassembly between polyoxometalates (POMs) and cationic building blocks provides an efficient strategy to greatly optimize POMs' functionality as well as their aggregate structural diversity. Adaptive hybrid supramolecular materials with enhanced luminescence have then been obtained from lanthanide-containing POMs. In this work, a commercially available and pH-switchable zwitterionic surfactant, tetradecyldimethylamine oxide (CDMAO), was chosen to coassemble with a lanthanide-containing anionic POM [Na(EuWO)·32HO, abbreviated as EuW] in water. The much improved red-emitting luminescent nanobelts at a CDMAO/EuW molar ratio ( R) of 20 were obtained, which exhibited longer luminescence lifetime and higher quantum yield compared with EuW aqueous solution. After careful characterization of morphology and structure of nanobelts, an unusual axial lamellar aggregation arrangement mechanism was proposed. It was the partial protonation of CDMAO at the solution pH of about 6.5 that led to positively charged micelles, being bridged by anionic EuW clusters to aggregate into such novel nanobelts under the synergetic effects of appropriate electrostatic, hydrogen-bonding, and hydrophobic interactions. The resulted pH-responsive luminescent nanobelts and their aggregation model should offer attractive references for preparing smart optical supramolecular materials.

摘要

最近,多金属氧酸盐(POMs)与阳离子结构单元之间的混合共组装提供了一种有效的策略,可极大地优化POMs的功能及其聚集结构的多样性。然后,从含镧系元素的POMs中获得了具有增强发光性能的自适应混合超分子材料。在这项工作中,选择了一种市售的、pH可切换的两性离子表面活性剂十四烷基二甲基氧化胺(CDMAO),使其与含镧系元素的阴离子POM [Na(EuWO)·32HO,简称为EuW] 在水中进行共组装。在CDMAO/EuW摩尔比(R)为20时,获得了发光性能大幅改善的红色发光纳米带,与EuW水溶液相比,其发光寿命更长,量子产率更高。在对纳米带的形态和结构进行仔细表征后,提出了一种不同寻常的轴向层状聚集排列机制。正是在溶液pH约为6.5时CDMAO的部分质子化导致带正电的胶束形成,在适当的静电、氢键和疏水相互作用的协同作用下,由阴离子EuW簇桥连聚集形成这种新型纳米带。所得的pH响应发光纳米带及其聚集模型应为制备智能光学超分子材料提供有吸引力的参考。

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