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The controlled synthesis of complex hollow nanostructures and prospective applications

机译:复杂中空纳米结构的控制合成及预期应用

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Functionality in nanoengineered materials has been usually explored on structural and chemical compositional aspects of matter that exist in such solid materials. It is well known that the absence of solid matter is also relevant and the existence of voids confined in the nanostructure of certain particles is no exception. Indeed, over the past decades, there has been great interest in exploring hollow nanostructured materials that besides the properties recognized in the dense particles also provide empty spaces, in the sense of condensed matter absence, as an additional functionality to be explored. As such, the chemical synthesis of hollow nanostructures has been driven not only for tailoring the size and shape of particles with well-defined chemical composition, but also to achieve control on the type of hollowness that characterize such materials. This review describes the state of the art on late developments concerning the chemical synthesis of hollow nanostructures, providing a number of examples of materials obtained by distinct strategies. It will be apparent by reading this progress report that the absence of solid matter determines the functionality of hollow nanomaterials for several technological applications.
机译:纳米工程材料的功能通常探讨了在这种固体材料中存在的结构和化学成分方面。众所周知,没有固体物质也是相关的,并且限制在某些颗粒的纳米结构中的空隙的存在也不例外。事实上,在过去的几十年中,探讨了探索空心纳米结构材料的兴趣,除了致密颗粒中识别的性质,还提供空间,在冷凝物质缺席的情况下,作为待探索的额外功能。因此,中空纳米结构的化学合成不仅被驱动,不仅用于剪裁具有明确定义的化学组成的颗粒的尺寸和形状,而且还可以实现对表征这些材料的核心类型的控制。该综述描述了关于中空纳米结构化学合成的晚期发展的技术,提供了通过不同策略获得的多种材料的实例。通过阅读此进展报告将显而易见的是,没有固体物质确定空心纳米材料的若干技术应用的功能。

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