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由单氰胺前体制备具有可调孔尺寸、带隙和含氮量的富氮介孔氮化碳。

Synthesis of nitrogen-rich mesoporous carbon nitride with tunable pores, band gaps and nitrogen content from a single aminoguanidine precursor.

机构信息

World Premier International (WPI), Research Center for Materials Nanoarchitectonics (MANA), National Institute for Materials Science, Tsukuba, Ibaraki, Japan.

出版信息

ChemSusChem. 2012 Apr;5(4):700-8. doi: 10.1002/cssc.201100626. Epub 2012 Mar 2.

Abstract

Highly ordered mesoporous carbon nitride (CN) with an extremely high nitrogen content and tunable pore diameters was synthesized by using a new precursor with a high nitrogen content, aminoguanidine hydrochloride and mesoporous silica SBA-15 with different pore diameters as hard templates. Surprisingly, the N/C ratio of the prepared mesoporous CN (MCN-4: 1.80) was considerably higher than that of the theoretically predicted C(3)N(4) nanostructures (1.33). This is mainly due to the fact that the CN precursor easily undergoes polymerization at high temperature and affords a highly stable polymer composed of a diamino-s-tetrazine moiety with a six-membered aromatic ring containing six nitrogen atoms that are linked trigonally with the nitrogen atoms. The obtained materials were thoroughly characterized by means of XRD, nitrogen adsorption, high resolution TEM, electron energy loss spectra, high resolution SEM, X-ray photoelectron spectroscopy, FTIR, and C, N, O, and S analysis. The results show that the MCN-4 materials possess a well-ordered mesoporous structure similar to SBA-15 with a high specific surface area and tunable band gap in the range of 2.25-2.49 eV. Interestingly, the pore diameter of the materials can be finely tuned from 3.1-5.8 nm by increasing the pore diameter of the hard-template SBA-15. The reaction temperature plays a critical role for the formation of MCN, and we found that 400 °C is the best condition to obtain MCN-4 with a high nitrogen content. We have further investigated the catalytic application of the MCN-4 materials towards Friedel-Crafts hexanoylation of benzene and compared the results with the mesoporous CN with less nitrogen content (MCN-1) and nonporous CN. Among the materials studied, MCN-4 showed the highest activity, affording a high yield of hexanophenone within a few hours, which is mainly due to the presence of free amine groups on the wall structure of MCN-4.

摘要

具有极高氮含量和可调孔径的高度有序介孔氮化碳(CN)是通过使用具有高氮含量的新前体制备的,该前体是盐酸氨基胍和具有不同孔径的介孔硅 SBA-15,作为硬模板。令人惊讶的是,所制备的介孔 CN(MCN-4:1.80)的 N/C 比大大高于理论预测的 C(3)N(4)纳米结构(1.33)。这主要是因为 CN 前体在高温下容易聚合,并提供了一种由二氨基-s-四嗪部分组成的高度稳定的聚合物,该聚合物具有包含六个氮原子的六元芳环,这些氮原子以三角形方式与氮原子连接。通过 XRD、氮气吸附、高分辨率 TEM、电子能量损失谱、高分辨率 SEM、X 射线光电子能谱、FTIR 和 C、N、O 和 S 分析对所得到的材料进行了彻底的表征。结果表明,MCN-4 材料具有类似于 SBA-15 的有序介孔结构,具有高比表面积和在 2.25-2.49 eV 范围内可调的带隙。有趣的是,通过增加硬模板 SBA-15 的孔径,可以将材料的孔径从 3.1-5.8nm 精细调节。反应温度对 MCN 的形成起着关键作用,我们发现 400°C 是获得高氮含量 MCN-4 的最佳条件。我们进一步研究了 MCN-4 材料在苯的 Friedel-Crafts 己酰化反应中的催化应用,并将结果与氮含量较低的介孔 CN(MCN-1)和无孔 CN 进行了比较。在所研究的材料中,MCN-4 表现出最高的活性,在几小时内提供了高收率的己酮苯,这主要是由于 MCN-4 的壁结构中存在游离的伯胺基团。

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