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Systematic morphology and phase control of Mg-ptcda coordination polymers by Ostwald ripening and self-templating

机译:systematic morphology and phase control of mg-ptcda coordination polymers by Ostwald ripening and self-templating

摘要

Mg-ptcda (ptcda perylene-3,4,9,10-tetracarboxylic dianhydride) coordination polymer particles (CPPs) with special hexagonal tubes morphology were manufactured by a self-assembly and hydrothermal method. The growth process from unstable nanoribbons to metastable hexagonal rods to a core-shell structure and finally to the stable hexagonal tubes was achieved and investigated by SEM and XRD characterizations. The morphology of Mg-ptcda is mainly controlled by Ostwald ripening and self-templating mechanism. Mg-ptcda CPPs with various morphologies, such as hexagonal rings and snowflakes, and particle sizes from micro to nanoscale can be finely tuned using organic solvent as additives. The optical properties of Mg-ptcda CPPs show that incorporation of ptcda dyes in coordination polymers can efficiently reduce their aggregation and interaction in the solid state. Furthermore, porous MgO nanomaterials with various morphologies can be fabricated from Mg-ptcda CPP precursors by a simple thermal treatment process.
机译:通过自组装和水热法制备了具有特殊六角形管形的Mg-ptcda(ptcda per-3,4,9,10-四羧酸二酐)配位聚合物颗粒(CPPs)。通过SEM和XRD表征,实现了从不稳定的纳米带到亚稳的六角形棒到核壳结构,再到稳定的六角形管的生长过程。 Mg-ptcda的形貌主要受Ostwald成熟和自模板机制控制。可以使用有机溶剂作为添加剂来微调具有六方环和雪花等各种形态的Mg-ptcda CPP,其粒径从微米到纳米。 Mg-ptcda CPPs的光学性质表明,在配位聚合物中掺入ptcda染料可以有效减少其在固态下的聚集和相互作用。此外,可以通过简单的热处理工艺从Mg-ptcda CPP前驱体制备具有各种形态的多孔MgO纳米材料。

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