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

Author:

Kim Taewoong1ORCID,Oh Joohee1,Kim Seung Cheol1,Ahn Jong‐Guk1ORCID,Kim Soyoung2,Kim Young Yong3,Lim Hyunseob1ORCID

Affiliation:

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

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

3. Beamline Division, Pohang Accelerator Laboratory Pohang University of Science & Technology Pohang 37673 Republic of Korea

Abstract

Abstract2D 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.

Funder

National Research Foundation of Korea

Publisher

Wiley

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