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首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Design and syntheses of MOF/COF hybrid materials via postsynthetic covalent modification: An efficient strategy to boost the visible-light-driven photocatalytic performance
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Design and syntheses of MOF/COF hybrid materials via postsynthetic covalent modification: An efficient strategy to boost the visible-light-driven photocatalytic performance

机译:通过后金价色化修饰设计和合成MOF / COF混合材料:提升可见光催化性能的有效策略

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摘要

The search of novel visible-light-responsive porous materials is important because they hold great promise for applications in various fields. Herein, we report a novel strategy based on postsynthetic covalent modification for fabrication of hierarchical porous metal-organic frameworks/covalent organic frameworks (MOF/COF) hybrid materials. For the first time, benzoic acid-modified covalent triazine-based frameworks (B-CTF-1) are covalently bonded with MOFs (NH2-MIL-125(Ti) or NH2-UiO-66(Zr)) by using this strategy. Photocatalytic results show that the hydrogen production rate over 15 wt% NH2-MIL-125(Ti)/B-CTF-1 (15TBC) is 360 mu mol.h(-1).g(-1) under visible light irradiation, which is more than twice as much as that of the B-CTF-1. Meanwhile, the hybrid materials show higher stability as compared to the simple heterostructures of MOFs and COFs connected via Van der Waals force. Photoelectrochemical analyses and controlled experiments indicate that the superior photocatalytic performance of the MOF/COF hybrids can be attributed to the formation of amide bonds between B-CTF-1 and MOFs, which facilitate the charge separation efficiency and improve the stability of the photocatalyst. Finally, a possible mechanism to well explain the improved photocatalytic performance of the photocatalytic system was proposed. The present work provides a new idea to construct highly efficient and stable MOF/COF hybrid systems and broaden the applications of COF-based materials.
机译:搜索新型可见光响应响应多孔材料是重要的,因为它们对各个领域的应用持有了巨大的希望。在此,我们报告了一种基于后合成的共价修饰的新型策略,用于制备分层多孔金属 - 有机骨架/共价有机骨架(MOF / COF)杂化材料。首次,通过使用该策略与MOF(NH2-MIL-125(Ti)或NH2-UIO-66(Zr)共价键合基于苯甲酸改性的共价三嗪类框架(B-CTF-1)。光催化结果表明,在可见光照射下,氢产率超过15wt%NH2-MIL-125(Ti)/ B-CTF-1(15TBC)是360μmol.h(-1).g(-1),这是B-CTF-1的两倍多。同时,与通过VAR DER WALS力连接的MOF和COF的简单异质结构相比,杂化材料表现出更高的稳定性。光电化学分析和控制实验表明,MOF / COF杂交体的卓越光催化性能可归因于B-CTF-1和MOF之间的酰胺键,这促进了电荷分离效率并提高了光催化剂的稳定性。最后,提出了一种提出良好解释光催化系统的改善光催化性能的可能机制。本工作提供了一种新的想法,可以构建高效稳定的MOF / COF混合系统,并扩大基于COF的材料的应用。

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