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作为有前景的复分解催化剂载体的稳定且结构规整的六方介孔锌掺杂氧化铝的合成、表征及见解

Synthesis, characterization and insights into stable and well organized hexagonal mesoporous zinc-doped alumina as promising metathesis catalysts carrier.

作者信息

Abidli Abdelnasser, Hamoudi Safia, Belkacemi Khaled

机构信息

Department of Soil Sciences and Agri-Food Engineering, Laval University, G1 V 0A6, Quebec city, Quebec, Canada.

出版信息

Dalton Trans. 2015 Jun 7;44(21):9823-38. doi: 10.1039/c4dt03630a.

Abstract

A series of highly ordered hexagonal mesoporous alumina and zinc-modified mesoporous alumina samples are synthesized via a sol-gel method through an evaporation-induced self-assembly process using Pluronic F127 as nonionic templating agent and several aluminum precursors. The process was mediated using several carboxylic acids along with hydrochloric acid in ethanol. Successful impregnation of ZnCl2 was achieved while maintaining the ordered structure. The surface and textural properties of the materials were investigated. N2-physisorption analysis revealed a BET surface area of 394 m(2) g(-1) and a pore volume around 0.55 cm(3) g(-1). Moreover, small-angle XRD diffraction patterns highlighted the well-organized hexagonal structure even upon the incorporation of zinc chloride. The organized-structure arrangement was further confirmed by transmission electron microscopy (TEM) analysis. The Zn/Al composition of the final materials was confirmed by EDX and XPS analysis, and the zinc amount incorporated was analyzed by ICP. Furthermore, the surface modification with zinc chloride impregnation was analyzed by XPS, (1)H and (27)Al MAS-NMR and FTIR spectroscopic techniques. In addition, the effects of synthesis conditions and the mechanism of the mesostructure formation were explored. The catalytic activity of several methyltrioxorhenium (MTO)-based catalysts supported on these hexagonal mesoporous alumina materials was tested for methyl oleate self-metathesis. The results showed improved kinetics using hexagonal alumina in comparison to those using wormhole-like alumina counterparts. This behavior could be attributed to better mass transfer features of hexagonal mesoporous alumina. The prepared materials with desirable pore size and structure are suitable candidates as catalyst supports for metathesis of bulky functionalized olefins and other catalytic transformations due to their enhanced Lewis acidity and more uniform pore networks favoring enhanced and selective mass transfer phenomena.

摘要

通过溶胶 - 凝胶法,以Pluronic F127作为非离子模板剂和几种铝前驱体,经蒸发诱导自组装过程合成了一系列高度有序的六方介孔氧化铝和锌改性介孔氧化铝样品。该过程在乙醇中使用几种羧酸和盐酸进行介导。在保持有序结构的同时成功实现了ZnCl₂的浸渍。研究了材料的表面和织构性质。N₂物理吸附分析表明,其BET表面积为394 m² g⁻¹,孔体积约为0.55 cm³ g⁻¹。此外,小角XRD衍射图谱表明,即使掺入氯化锌,六方结构仍组织良好。通过透射电子显微镜(TEM)分析进一步证实了组织结构排列。通过EDX和XPS分析确定了最终材料的Zn/Al组成,并通过ICP分析了掺入的锌量。此外,还通过XPS、¹H和²⁷Al MAS - NMR以及FTIR光谱技术分析了氯化锌浸渍的表面改性。此外,还探索了合成条件的影响和介观结构形成的机理。测试了负载在这些六方介孔氧化铝材料上的几种甲基三氧化铼(MTO)基催化剂对油酸甲酯自复分解反应的催化活性。结果表明,与使用蠕虫状氧化铝相比,使用六方氧化铝时动力学得到改善。这种行为可归因于六方介孔氧化铝更好的传质特性。所制备的具有理想孔径和结构的材料,由于其增强的路易斯酸性和更均匀的孔网络有利于增强和选择性传质现象,是用于大分子官能化烯烃复分解反应和其他催化转化的合适催化剂载体候选材料。

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