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具有微环境调节光催化效率的半导体金属-共价有机框架的室温单相合成

Room-Temperature Single-Phase Synthesis of Semiconducting Metal-Covalent Organic Frameworks With Microenvironment-Tuned Photocatalytic Efficiency.

作者信息

Wu Dongchuang, Zhang Qiongshan, Yin Shiyu, Song Congying, Gu Ning, Wang Dong, Cai Tao, Zhang Bin

机构信息

Key Laboratory for Advanced Materials, School of Chemistry and Molecular Engineering, East China University of Science and Technology, Shanghai, 200237, China.

School of Energy and Power Engineering, North University of China, Taiyuan, 030051, China.

出版信息

Small Methods. 2025 Apr;9(4):e2401284. doi: 10.1002/smtd.202401284. Epub 2024 Oct 11.

Abstract

In order to improve the solubility of metallated monomers and product crystallinity, metal-covalent organic frameworks (MCOFs) are commonly prepared via high-temperature sol-vothermal synthesis. However, it hampers the direct extraction of crystallization evolution information. Exploring facile room-temperature strategies for both synthesizing MCOFs and exploiting the crystallinity mechanism is extremely desired. Herein, by a novel single-phase synthetic strategy, three MCOFs with different microstructure is rapidly prepared based on the Schiff base reaction between planarity-tunable C monomers and metallated monomers at room temperature. Based on detailed time-dependent experiments and theoretical calculations, it is found that there is a planarity-tuned and competitive growth relationship between disordered structures and crystal nucleus for the first time. The high planarity of monomers boosts the formation of crystal nucleus and rapid growth, suppressing the forming of amorphous structures. In addition, the microenvironment effect on selective photocatalytic coupling of benzylamine (BA) is investigated. The strong donor-acceptor (D-A) MCOF exhibits efficient photocatalytic activity with a high conversion rate of 99% and high selectivity of 99% in 5 h under the 520 nm light irradiation. This work opens a new pathway to scalable and efficient synthesis of highly crystalline MCOFs.

摘要

为了提高金属化单体的溶解度和产物结晶度,金属共价有机框架(MCOFs)通常通过高温溶剂热合成来制备。然而,这阻碍了对结晶演化信息的直接提取。迫切需要探索用于合成MCOFs和研究结晶度机制的简便室温策略。在此,通过一种新颖的单相合成策略,基于平面可调C单体与金属化单体在室温下的席夫碱反应,快速制备了三种具有不同微观结构的MCOFs。基于详细的时间依赖性实验和理论计算,首次发现无序结构与晶核之间存在平面度调节的竞争生长关系。单体的高平面度促进了晶核的形成和快速生长,抑制了无定形结构的形成。此外,研究了微环境对苄胺(BA)选择性光催化偶联的影响。在520 nm光照下,强供体-受体(D-A)MCOF在5小时内表现出高效的光催化活性,转化率高达99%,选择性高达99%。这项工作为可扩展且高效地合成高结晶度MCOFs开辟了一条新途径。

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