Schmidt Joel E, Chen Cong-Yan, Brand Stephen K, Zones Stacey I, Davis Mark E
Chemical Engineering, California Institute of Technology, Pasadena, CA, 91125, USA.
Chevron Energy Technology Company, Richmond, CA, 94802, USA.
Chemistry. 2016 Mar 14;22(12):4022-9. doi: 10.1002/chem.201504717. Epub 2016 Feb 2.
Large-pore microporous materials are of great interest to process bulky hydrocarbon and biomass-derived molecules. ITQ-27 (IWV) has a two-dimensional pore system bounded by 12-membered rings (MRs) that lead to internal cross-sections containing 14 MRs. Investigations into the catalytic behavior of aluminosilicate (zeolite) materials with this framework structure have been limited until now due to barriers in synthesis. The facile synthesis of aluminosilicate IWV in both hydroxide and fluoride media is reported herein using simple, diquaternary organic structure-directing agents (OSDAs) that are based on tetramethylimidazole. In hydroxide media, a zeolite product with Si/Al=14.8-23.2 is obtained, while in fluoride media an aluminosilicate product with Si/Al up to 82 is synthesized. The material produced in hydroxide media is tested for the hydroisomerization of n-hexane, and results from this test reaction suggest that the effective pore size of zeolites with the IWV framework structure is similar to but slightly larger than that of ZSM-12 (MTW), in fairly good agreement with crystallographic data.
大孔微孔材料对于处理大分子烃类和生物质衍生分子具有重要意义。ITQ - 27(IWV)具有由12元环(MRs)界定的二维孔道系统,这些12元环导致内部横截面包含14元环。由于合成方面的障碍,迄今为止对具有这种骨架结构的铝硅酸盐(沸石)材料的催化行为的研究一直有限。本文报道了使用基于四甲基咪唑的简单二元有机结构导向剂(OSDAs)在氢氧化物和氟化物介质中简便合成铝硅酸盐IWV。在氢氧化物介质中,获得了Si/Al = 14.8 - 23.2的沸石产物,而在氟化物介质中合成了Si/Al高达82的铝硅酸盐产物。对在氢氧化物介质中制备的材料进行了正己烷加氢异构化测试,该测试反应的结果表明,具有IWV骨架结构的沸石的有效孔径与ZSM - 12(MTW)相似但略大,这与晶体学数据相当吻合。