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Silver Iodide Microstructures of a Uniform Towerlike Shape: Morphology Purification via a Chemical Dissolution, Simultaneously Boosted Catalytic Durability, and Enhanced Catalytic Performances

机译:均匀塔状形状的碘化银微结构:通过化学溶解的形态纯化,同时提高的催化耐久性和增强的催化性能

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摘要

The fabrication of microstructuresanostruc-tures of a uniform yet well-defined morphology has attracted broad interest from a variety of fields of advanced functional materials, especially catalysts. Most of the conventional methods generally suffer from harsh synthesis conditions, requirement of bulky apparatus, or incapability of scalable production, etc. To meet these formidable challenges, it is strongly desired to develop a facile, cost-effective, scalable method to fulfill a morphology purification. By a precipitation reaction between AgNO3 and KI. we report that irregular AgI structures, or their mixture with towerlike AgI architectures could be fabricated. Compared to the former, the mixed structures exhibit enhanced catalytic reactivity toward the photodegradation of Methyl Orange pollutant. However, its catalytic durability, which is one of the most crucial criteria that are required by superior catalysts, is poor. We further show that the irregular structures could be facilely removed from the mixture via a KI-assisted chemical dissolution, producing AgIof a uniform towerlike morphology. Excitingly, after such simple morphology purification, our towerlike AgI displays not only a boosted catalytic durability but also an enhanced catalytic reactivity. Our chemical dissolution-based morphology purification protocol might be extended to other systems, wherein high-quality advanced functional materials of desired properties might be developed.
机译:均匀而轮廓分明的形态的微结构/纳米结构的制造引起了先进功能材料尤其是催化剂的各种领域的广泛兴趣。大多数常规方法通常会遇到苛刻的合成条件,庞大的设备需求或无法进行规模化生产等问题。为了解决这些艰巨的挑战,迫切需要开发一种易于实现的,经济高效的,可扩展性强的形态学方法。纯化。通过AgNO 3和KI之间的沉淀反应。我们报告说,可以制造不规则的AgI结构,或将它们与塔状AgI体系结构混合使用。与前者相比,混合结构对甲基橙污染物的光降解表现出增强的催化活性。但是,其催化耐久性是优良催化剂所要求的最关键的标准之一,它的耐久性很差。我们进一步表明,不规则结构可以通过KI辅助化学溶解轻松地从混合物中去除,从而产生具有均匀塔状形态的AgI。令人兴奋的是,经过如此简单的形态纯化后,我们的塔状AgI不仅显示出增强的催化耐久性,而且显示出增强的催化反应活性。我们基于化学溶解的形态学纯化方案可能会扩展到其他系统,其中可能会开发出具有所需特性的高质量高级功能材料。

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