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Surfactant-assisted ZnO processing as a versatile route to ZIF composites and hollow architectures with enhanced dye adsorption

机译:表面活性剂辅助的ZnO加工作为ZIF复合材料和中空结构的通用途径,具有增强的染料吸附性

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摘要

Metal oxides can be used as hard sacrificial templates for the preparation of multifunctional core–shell MOF-based composites following reaction with an organic linker. This is a facile method, but often structures of well-defined shape are only obtained under narrow ranges of conditions, the shape can be lost completely and low levels of MOF conversion observed. Using the prototypical framework ZIF-8 we present an alternative surfactant-assisted surface passivation strategy where the ZnO precursor particles are first coated with a guanidinium-based amphiphile. The surfactant interacts strongly with the oxide surface and allows fine-tuning of the release of Zn(II) and ZIF-8 nucleation by the level of surface coverage permitting a range of well-defined ZnO@ZIF-8 core–shell architectures to be prepared including in water. Further, selective base-etching of the oxide core provides facile access to hollow ZIF-8 and yolk–shell structures. We also demonstrate enhanced dye adsorption and recovery from aqueous mixtures using ZnO@ZIF-8 composite microsphere
机译:金属氧化物可用作与有机连接剂反应后制备多功能核-壳MOF基复合材料的硬牺牲模板。这是一种简便的方法,但是通常只能在狭窄的条件范围内获得形状明确的结构,形状可能会完全丢失,并且观察到的MOF转化率较低。使用原型框架ZIF-8,我们提出了另一种表面活性剂辅助的表面钝化策略,其中ZnO前体颗粒首先被胍基两亲物包覆。表面活性剂与氧化物表面有很强的相互作用,并且可以通过表面覆盖水平微调Zn(II)和ZIF-8核的释放,从而使一系列定义明确的ZnO @ ZIF-8核-壳结构成为可能。准备包括在水中。此外,对氧化物核的选择性基础蚀刻提供了对中空ZIF-8和蛋黄壳结构的便捷访问。我们还展示了使用ZnO @ ZIF-8复合微球增强染料从水性混合物中的吸附和回收率

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