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通过模板参与的氧化还原刻蚀工程具有复杂内部的非球形中空结构。

Engineering nonspherical hollow structures with complex interiors by template-engaged redox etching.

机构信息

School of Chemical and Biomedical Engineering, Nanyang Technological University, 70 Nanyang Drive, Singapore 637457.

出版信息

J Am Chem Soc. 2010 Nov 17;132(45):16271-7. doi: 10.1021/ja107871r. Epub 2010 Oct 25.

Abstract

Despite the significant advancement in making hollow structures, one unsolved challenge in the field is how to engineer hollow structures with specific shapes, tunable compositions, and desirable interior structures. In particular, top-down engineering the interiors inside preformed hollow structures is still a daunting task. In this work, we demonstrate a facile approach for the preparation of a variety of uniform hollow structures, including Cu(2)O@Fe(OH)(x) nanorattles and Fe(OH)(x) cages with various shapes and dimensions by template-engaged redox etching of shape-controlled Cu(2)O crystals. The composition can be readily modulated at different structural levels to generate other interesting structures such as Cu(2)O@Fe(2)O(3) and Cu@Fe(3)O(4) rattles, as well as Fe(2)O(3) and Fe(3)O(4) cages. More remarkably, this strategy enables top-down engineering the interiors of hollow structures as demonstrated by the fabrication of double-walled nanorattles and nanoboxes, and even box-in-box structures. In addition, this approach is also applied to form Au and MnO(x) based hollow structures.

摘要

尽管在制造中空结构方面取得了重大进展,但该领域仍存在一个未解决的挑战,即如何设计具有特定形状、可调成分和理想内部结构的中空结构。特别是,在预先形成的中空结构内部进行自上而下的内部工程仍然是一项艰巨的任务。在这项工作中,我们展示了一种简便的方法,通过对形状可控的 Cu(2)O 晶体进行模板参与的氧化还原刻蚀,制备了各种均匀的中空结构,包括 Cu(2)O@Fe(OH)(x)纳米棒和具有各种形状和尺寸的 Fe(OH)(x)笼。通过在不同的结构水平上进行成分的轻松调节,可以生成其他有趣的结构,如 Cu(2)O@Fe(2)O(3)和 Cu@Fe(3)O(4)纳米摇铃,以及 Fe(2)O(3)和 Fe(3)O(4)笼。更值得注意的是,这种策略可以实现对中空结构内部的自上而下的工程设计,如双壁纳米摇铃和纳米盒的制造,甚至是盒中盒结构。此外,该方法还应用于形成 Au 和 MnO(x)基中空结构。

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