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Antisolvent crystallization approach to construction of CuI superstructures with defined geometries

机译:定义几何形状的CuI超结构的反溶剂结晶方法

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A facile high-yield production of cuprous iodide (CuI) superstructures is reported by antisolvent crystallization using acetonitrile/water as a solvent/antisolvent couple under ambient conditions. In the presence of trace water, the metastable water droplets act as templates to induce the precipitation of hollow spherical CuI superstructures consisting of orderly aligned building blocks after drop coating. With water in excess in the mixed solution, an instant precipitation of CuI random aggregates takes place due to rapid crystal growth via ion-by-ion attachment induced by a strong antisolvent effect. However, this uncontrolled process can be modified by adding polymer polyvinyl pyrrolidone (PVP) in water to restrict the size of initially formed CuI crystal nuclei through the effective coordination effect of PVP. As a result, CuI superstructures with a cuboid geometry are constructed by gradual self-assembly of the small CuI crystals via oriented attachment. The precipitated CuI superstructures have been used as competent adsorbents to remove organic dyes from the water due to their mesocrystal feature. Besides, the CuI superstructures have been applied either as a self-sacrificial template or only as a structuring template for the flexible design of other porous materials such as CuO and TiO2. This system provides an ideal platform to simultaneously investigate the superstructure formation enforced by antisolvent crystallization with and without organic additives.
机译:据报道,在环境条件下,使用乙腈/水作为溶剂/抗溶剂对,通过反溶剂结晶可轻松实现高产量的碘化亚铜(CuI)超结构的生产。在存在痕量水的情况下,亚稳水滴充当模板,诱导滴涂后中空球形CuI上部结构的沉淀,该结构由有序排列的结构块组成。当混合溶液中的水过多时,由于强反溶剂作用引起的离子对离子的附着,晶体快速生长,从而使CuI无规聚集体立即析出。但是,可以通过在水中添加聚合物聚乙烯吡咯烷酮(PVP)来修改这种不受控制的过程,以通过PVP的有效配位作用限制最初形成的CuI晶核的大小。结果,通过定向附接逐渐使小CuI晶体自组装,从而形成了具有长方体几何形状的CuI超结构。沉淀的CuI超结构由于其介晶特征已被用作有效的吸附剂,以从水中去除有机染料。此外,CuI上层结构已被用作自牺牲模板,或仅被用作结构模板,用于其他多孔材料(如CuO和TiO2)的柔性设计。该系统提供了一个理想的平台,可同时研究在有或没有有机添加剂的情况下,由反溶剂结晶所引起的上部结构的形成。

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