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金属有机骨架的表面纳米结构。

Surface nano-architecture of a metal-organic framework.

出版信息

Nat Mater. 2010 Jul;9(7):565-71. doi: 10.1038/nmat2769. Epub 2010 May 30.

Abstract

The rational assembly of ultrathin films of metal-organic frameworks (MOFs)--highly ordered microporous materials--with well-controlled growth direction and film thickness is a critical and as yet unrealized issue for enabling the use of MOFs in nanotechnological devices, such as sensors, catalysts and electrodes for fuel cells. Here we report the facile bottom-up fabrication at ambient temperature of such a perfect preferentially oriented MOF nanofilm on a solid surface (NAFS-1), consisting of metalloporphyrin building units. The construction of NAFS-1 was achieved by the unconventional integration in a modular fashion of a layer-by-layer growth technique coupled with the Langmuir-Blodgett method. NAFS-1 is endowed with highly crystalline order both in the out-of-plane and in-plane orientations to the substrate, as demonstrated by synchrotron X-ray surface crystallography. The proposed structural model incorporates metal-coordinated pyridine molecules projected from the two-dimensional sheets that allow each further layer to dock in a highly ordered interdigitated manner in the growth of NAFS-1. We expect that the versatility of the solution-based growth strategy presented here will allow the fabrication of various well-ordered MOF nanofilms, opening the way for their use in a range of important applications.

摘要

将金属-有机骨架(MOFs)——高度有序的微孔材料——的超薄膜进行合理组装,具有可控的生长方向和薄膜厚度,这对于在纳米技术器件(如传感器、催化剂和燃料电池电极)中使用 MOFs 是一个关键且尚未实现的问题。在这里,我们报告了在室温下在固体表面上(NAFS-1)通过底向上的方法轻松制造这种由金属卟啉构筑单元组成的完美取向的 MOF 纳米薄膜。通过将逐层生长技术与 Langmuir-Blodgett 方法非常规地以模块化方式集成,实现了 NAFS-1 的构建。正如同步辐射 X 射线表面晶体学所证明的那样,NAFS-1 具有在垂直和平行于衬底的方向上的高度结晶有序性。所提出的结构模型包含配位在二维片上的金属吡啶分子,允许在 NAFS-1 的生长过程中以高度有序的交错方式进一步层叠。我们预计,这里提出的基于溶液的生长策略的多功能性将允许制造各种有序的 MOF 纳米薄膜,为它们在一系列重要应用中的使用开辟道路。

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