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利用动态液/固界面光化学合成及可图案化二维共价有机框架薄膜

Photochemical and Patternable Synthesis of 2D Covalent Organic Framework Thin Film Using Dynamic Liquid/Solid Interface.

作者信息

Kim Taewoong, Oh Joohee, Kim Seung Cheol, Ahn Jong-Guk, Kim Soyoung, Kim Young Yong, Lim Hyunseob

机构信息

Department of Chemistry, Gwangju Institute of Science and Technology (GIST), Gwangju, 61005, Republic of Korea.

Analysis and Assessment Group, Research Institute of Industrial Science and Technology, Pohang, 37673, Republic of Korea.

出版信息

Small Methods. 2024 Dec;8(12):e2400063. doi: 10.1002/smtd.202400063. Epub 2024 May 9.

Abstract

2D covalent organic frameworks (COFs) are highly porous crystalline materials with promising applications in organic electronics. Current methods involve either on-surface synthesis (solid surface) or interfacial synthesis (liquid/liquid, liquid/gas interface) to create thin films for these applications, each with its drawbacks. On-surface synthesis can lead to contamination from COF powder or unreacted chemicals, while interfacial synthesis risks damaging the film during post-transfer processes. These challenges necessitate the development of alternative synthesis methods for high-quality 2D COF films. This study presents a novel approach for synthesizing homogeneous 2D COF thin films by combining photochemistry and a liquid-flowing system. Leveraging previous work on liquid flow systems to prevent contamination during solvothermal synthesis, this approach to the photochemical method, resulting in the synthesis of high-crystalline 2D COF films with tunable thickness is adopted. The photochemical approach offers spatially controllable energy sources, enabling patternable COF synthesis. Notably, it is successfully fabricated ultrasmooth patterned 2D COF films on hexagonal boron nitride, offering a streamlined process for optoelectronic device fabrication without additional pre, post-processing steps.

摘要

二维共价有机框架(COF)是具有高度多孔性的晶体材料,在有机电子学领域有着广阔的应用前景。目前的方法包括表面合成(固体表面)或界面合成(液/液、液/气界面)来制备用于这些应用的薄膜,但每种方法都有其缺点。表面合成可能会导致COF粉末或未反应的化学物质造成污染,而界面合成在转移后处理过程中有损坏薄膜的风险。这些挑战使得有必要开发用于高质量二维COF薄膜的替代合成方法。本研究提出了一种通过结合光化学和液流系统来合成均匀二维COF薄膜的新方法。利用先前在液流系统方面的工作来防止溶剂热合成过程中的污染,采用这种光化学方法,从而合成具有可调厚度的高结晶二维COF薄膜。光化学方法提供了空间可控的能量源,能够实现可图案化的COF合成。值得注意的是,在六方氮化硼上成功制备了超光滑的图案化二维COF薄膜,为光电器件制造提供了一个无需额外预处理和后处理步骤的简化流程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d954/11672181/755741321021/SMTD-8-2400063-g001.jpg

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