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金属有机骨架的图案化技术。

Patterning techniques for metal organic frameworks.

机构信息

CSIRO, Division of Materials Science and Engineering, Clayton South MDC, Victoria, Australia.

出版信息

Adv Mater. 2012 Jun 26;24(24):3153-68. doi: 10.1002/adma.201200485. Epub 2012 May 29.

Abstract

The tuneable pore size and architecture, chemical properties and functionalization make metal organic frameworks (MOFs) attractive versatile stimuli-responsive materials. In this context, MOFs hold promise for industrial applications and a fervent research field is currently investigating MOF properties for device fabrication. Although the material properties have a crucial role, the ability to precisely locate the functional material is fundamental for device fabrication. In this progress report, advancements in the control of MOF positioning and precise localization of functional materials within MOF crystals are presented. Advantages and limitations of each reviewed technique are critically investigated, and several important gaps in the technological development for device fabrication are highlighted. Finally, promising patterning techniques are presented which are inspired by previous studies in organic and inorganic crystal patterning for the future of MOF lithography.

摘要

可调孔径和结构、化学性质和功能化使金属有机骨架(MOFs)成为有吸引力的多功能刺激响应材料。在这种情况下,MOFs 在工业应用中具有广阔的前景,目前有一个热烈的研究领域正在研究 MOF 特性以用于器件制造。尽管材料性能起着至关重要的作用,但精确定位功能材料的能力对于器件制造是至关重要的。在本进展报告中,介绍了控制 MOF 定位和在 MOF 晶体中精确定位功能材料的进展。对每种被综述技术的优缺点进行了批判性的研究,并强调了器件制造技术发展中的几个重要空白。最后,提出了一些有前途的图案化技术,这些技术的灵感来自于有机和无机晶体图案化的先前研究,为 MOF 光刻的未来提供了启示。

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