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使用酸化 g-CN 作为层状表面活性剂可控且可扩展合成有序介孔硅纳米片。

Controllable and scalable synthesis of ordered mesoporous silica nanosheets by using acidified g-CN as a lamellar surfactant.

机构信息

State Key Laboratory for Oxo Synthesis and Selective Oxidation, Lanzhou Institute of Chemical Physics, Chinese Academy of Sciences, Lanzhou, 730000, People's Republic of China.

出版信息

Nanotechnology. 2017 Jul 21;28(29):29LT01. doi: 10.1088/1361-6528/aa76c2. Epub 2017 Jun 2.

Abstract

Two-dimensional (2D) mesoporous nanomaterials are required in catalysis, separation, adsorption, and energy storage fields due to their outstanding mass transfer performance. However, their fabrication via the 'bottom up' strategy has been rarely reported and is limited by the difficulties in obtaining a versatile and accessible structure-directing agent. Here, ultrathin mesoporous silica nanosheets (MSN) were successfully synthesized by employing acidified g-CN as a structural directing agent owing to its natural layered structure, stoichiometric solubility, and amphiphilicity. The thickness of MSN is readily adjustable by tuning the dosage of acidified g-CN during the fabrication process, and when the mass ratio of silica/acidified-g-CN is 10, the thickness of the MSN is 6-9 nm. TEM, SAXRD, and BET analysis demonstrated the mesoporous characteristics of MSN with a long-range ordered hexagonal arrangement symmetry, a uniform pore size distribution around 2.9 nm, and high BET surface areas of 1000-1150 m g. The superior mass-transfer performance of MSN in catalysis applications, which was derived from its special structure, was confirmed by the outstanding methane combustion activity of MSN supported CoO catalysts. This work provides a controllable and scalable 'bottom up' fabrication method for 2D porous material, and also opens up an alternative application for g-CN.

摘要

二维(2D)介孔纳米材料由于其出色的传质性能,在催化、分离、吸附和储能等领域都有需求。然而,通过“自下而上”的策略来制备 2D 介孔纳米材料的方法很少被报道,并且受到难以获得通用且易于获得的结构导向剂的限制。在这里,通过使用酸化 g-CN 作为结构导向剂,成功地合成了超薄介孔硅纳米片(MSN),这是由于其天然的层状结构、化学计量溶解性和两亲性。通过在制备过程中调整酸化 g-CN 的用量,可以轻松调节 MSN 的厚度,当二氧化硅/酸化-g-CN 的质量比为 10 时,MSN 的厚度为 6-9nm。TEM、SAXRD 和 BET 分析表明,MSN 具有长程有序的六方排列对称性、约 2.9nm 的均匀孔径分布和 1000-1150m2/g 的高 BET 比表面积,具有介孔特征。MSN 在催化应用中的出色传质性能源自其特殊结构,这一点通过 MSN 负载 CoO 催化剂在甲烷燃烧活性方面的出色表现得到了证实。这项工作为 2D 多孔材料提供了一种可控且可扩展的“自下而上”的制造方法,也为 g-CN 开辟了一种替代应用。

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