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氮杂环胺调节剂对沸石咪唑骨架结构和热转化的影响

Impact of N-heterocyclic amine modulators on the structure and thermal conversion of a zeolitic imidazole framework.

作者信息

Castells-Gil Javier, Zhu Jinjie, Itskou Ioanna, Wolpert Emma H, Hunter Robert D, Tidey Jeremiah P, Pedersen Angus, Solvay Elisa, Tyrrell Helen, Petit Camille, Barrio Jesús

机构信息

School of Chemistry, University of Birmingham Birmingham B152TT UK

Department of Chemical Engineering, Imperial College London London SW27 2AZ UK

出版信息

J Mater Chem A Mater. 2025 Jul 24. doi: 10.1039/d5ta04831a.

Abstract

The zeolitic imidazole framework-8 (ZIF-8) is a crystalline porous material that has been widely employed as template to fabricate porous nitrogen-doped carbons with high microporosity thermal treatment at high temperatures. The properties of the carbon scaffold are influenced by the pore structure and chemical composition of the parent ZIF. However, the narrow pore size distribution and microporous nature from ZIF-8 often results in low mesopore volume, which is crucial for applications such as energy storage and conversion. Here we show that insertion of N-heterocyclic amines can disrupt the structure of ZIF-8 and dramatically impact the chemical composition and pore structure of the nitrogen-doped carbon frameworks obtained after high-temperature pyrolysis. Melamine and 2,4,6-triaminopyrimidine were chosen to modify the ZIF-8 structure owing to their capability to both coordinate metal ions and establish supramolecular interactions. Employing a wide variety of physical characterization techniques we observed that melamine results in the formation of a mixed-phase material comprising ZIF-8, Zn(Ac)(Mel) and crystallized melamine, while 2,4,6-triaminopyrimidine induces the formation of defects, altering the pore structure. Furthermore, the absence of heterocyclic amine in the ZIF-8 synthesis leads to a new crystalline phase, unreported to date. The thermal conversion of the modified ZIFs at 1000 °C leads to nitrogen-doped carbons bearing Zn moieties with increased surface area, mesopore volume and varying degree of defects compared to ZIF-8 derived carbon. This work therefore highlights both the versatility of heterocyclic amines to modify the structure of framework materials as well as their role in tuning pore structure in nitrogen-doped carbons, paving the way to targeted design of high-performance electrodes for energy storage and conversion.

摘要

沸石咪唑框架-8(ZIF-8)是一种晶体多孔材料,已被广泛用作模板,通过高温热处理来制备具有高微孔率的多孔氮掺杂碳。碳骨架的性质受母体ZIF的孔结构和化学成分影响。然而,ZIF-8窄的孔径分布和微孔性质常常导致中孔体积较低,而中孔体积对于诸如能量存储和转换等应用至关重要。在此我们表明,插入N-杂环胺可破坏ZIF-8的结构,并显著影响高温热解后所得氮掺杂碳框架的化学成分和孔结构。由于三聚氰胺和2,4,6-三氨基嘧啶既能配位金属离子又能建立超分子相互作用,因此选择它们来修饰ZIF-8结构。通过使用各种物理表征技术,我们观察到三聚氰胺导致形成一种包含ZIF-8、Zn(Ac)(Mel)和结晶三聚氰胺的混合相材料,而2,4,6-三氨基嘧啶会诱导缺陷形成,改变孔结构。此外,在ZIF-8合成中不存在杂环胺会导致形成一种迄今未报道的新晶相。与源自ZIF-8的碳相比,改性ZIFs在1000℃下的热转化导致含锌部分的氮掺杂碳具有增加的表面积、中孔体积和不同程度的缺陷。因此,这项工作突出了杂环胺在修饰框架材料结构方面的多功能性以及它们在调节氮掺杂碳孔结构中的作用,为储能和转换用高性能电极的定向设计铺平了道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ca80/12311777/b1e7b3aea4a9/d5ta04831a-s1.jpg

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