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首页> 外文期刊>Angewandte Chemie >Evaporation-Directed Crack-Patterning of Metal-Organic Framework Colloidal Films and Their Application as Photonic Sensors
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Evaporation-Directed Crack-Patterning of Metal-Organic Framework Colloidal Films and Their Application as Photonic Sensors

机译:金属有机框架胶体薄膜的蒸发导向裂纹 - 图案化及其应用作为光子传感器

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摘要

A straightforward crack-patterning method is reported allowing the direct formation of periodic cracks in metal-organic framework (MOF) nanoparticle films during dip-coating deposition. The crack propagation and periodicity can be easily tailored by controlling the evaporation front and the withdrawal speed. Several MOF-patterned films can be fabricated on large surfaces and on several substrates (flat, curved or flexible) including the inner surface of a tube, not achievable by other lithographic techniques. We demonstrate that the periodic cracked arrays diffract light and, due to the MOF sorption properties, photonic vapor sensors are fabricated. A new concept of "in-tube", MOF-based diffraction grating sensors is proposed with outstanding sensitivity that can be easily tuned "on-demand" as function of the desired detection range.
机译:报告了一种直接的裂纹图案化方法,允许在浸涂沉积期间的金属有机骨架(MOF)纳米粒子膜中的周期性裂缝直接形成。 通过控制蒸发前沿和抽出速度,可以轻松定制裂纹传播和周期性。 几种MOF图案薄膜可以在大表面上制造,并且在包括管的内表面的几个基板(平坦,弯曲或柔性)上,不能通过其他光刻技术可实现。 我们证明周期性裂纹阵列衍射光,并且由于MOF吸附特性,制造光子蒸气传感器。 “管内”的新概念,基于MOF的衍射光栅传感器,具有出色的灵敏度,可以在所需检测范围的功能中容易地调谐“按需”。

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