Song Guoqiang, Chen Wenting, Dang Peipei, Yang Shengyuan, Zhang Yuan, Wang Yuanyi, Xiao Ruidi, Ma Rong, Li Fuxiang
2011 Special Functional Materials Collaborative Innovation Center of Guizhou Province, Guizhou Institute of Technology, 1st Caiguan Road, Yunyan District, Guiyang, 550003, Guizhou Province, China.
Engineering Technology Research Center of Fluorine Silicon Material, School of Chemical Engineering, Guizhou Institute of Technology, Guiyang, China.
Nanoscale Res Lett. 2018 Nov 15;13(1):364. doi: 10.1186/s11671-018-2779-8.
A novel soft-template (ST) is fabricated and successfully employed as mesoporogen to synthesis hierarchical ZSM-5 zeolites with outstanding mesoporosity and high hierarchy factors. The as-produced soft-template can connect steadily with the MFI frameworks by covalent bonds of -Si-O-Si- during the high-temperature hydrothermal crystallization process. This type of connection mode can effectively avoid the formation of amorphous materials, and the specific structure of this soft-template can efficiently introduce plentiful of mesopores with few micropores being consumed. The particles of as-synthesized hierarchical ZSM-5 zeolites are in size of about 1 μm, which are made up of nanocrystals of 60-150 nm. The structure parameters of these samples are characterized with the techniques of X-ray diffraction (XRD), Fourier transform infrared (FTIR) spectroscopy, nitrogen sorption, scanning electron microscope (SEM), transmission electron microscope (TEM), NH temperature-programmed desorption (NH-TPD) and thermogravimetric (TG). Due to the nature of zeolites and great microporosity, these hierarchical samples present great tolerance of hydrothermal treatment. And because of the intracrystalline mesopores, large external surface areas, and abundant accessible acid sites, whether in conversion rate of reactants or selectivity of products, the hierarchical samples exhibit excellent catalytic performance in the reactions of alkylation between benzene and benzyl alcohol, cracking of 1,3,5-tri-isopropylbenzene, and thermal cracking of low-density polyethylene (LDPE), respectively.
制备了一种新型软模板(ST),并成功将其用作介孔生成剂,以合成具有出色介孔率和高分级因子的分级ZSM-5沸石。在高温水热结晶过程中,所制备的软模板可以通过-Si-O-Si-共价键与MFI骨架稳定连接。这种连接方式可以有效避免无定形材料的形成,并且这种软模板的特定结构可以有效地引入大量介孔,而消耗的微孔很少。合成的分级ZSM-5沸石颗粒尺寸约为1μm,由60-150nm的纳米晶体组成。采用X射线衍射(XRD)、傅里叶变换红外(FTIR)光谱、氮吸附、扫描电子显微镜(SEM)、透射电子显微镜(TEM)、NH3程序升温脱附(NH3-TPD)和热重分析(TG)等技术对这些样品的结构参数进行了表征。由于沸石的性质和高微孔率,这些分级样品对水热处理具有很大的耐受性。并且由于晶内介孔、大的外比表面积和丰富的可及酸位,无论是反应物转化率还是产物选择性,分级样品在苯与苯甲醇的烷基化反应、1,3,5-三异丙基苯的裂化反应以及低密度聚乙烯(LDPE)的热裂化反应中均表现出优异的催化性能。