Empowering catalysis and separation: morphology control of MFI zeolites using organic additives

IF 5 3区 材料科学 Q2 CHEMISTRY, PHYSICAL
Jun Zhao, Haijun Yu, Haimei Xu, Zhiyu He, Feng Shao, Peng Lu and Valentin Valtchev
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引用次数: 0

Abstract

As one of the most successful inorganic materials, MFI zeolite has been widely used in petrochemical and fine chemical industries. However, the presence of only micropores in MFI zeolite creates diffusion barriers and thus precludes its usage in processes involving large substrates. It is highly desirable to mitigate the diffusion pathways in MFI zeolites. One of the efficient methods is the morphology control strategy, which has become a hot topic in the past few decades. In this review, we summarize the progress of MFI zeolite morphology control using specific organic additives as morphology modifiers to enhance the catalytic and separation performance. Organic additives, including urea, amino acids, small organic molecules, and polymers, were categorized based on the MFI zeolites induced by them. The morphologies generated can be classified as nanocrystals, aggregated nanoparticles, nanosheets, intergrown nanosheets, plates, intergrown plates, needles, and bulky prismatic crystals, depending on the specific additives. The formation mechanisms of different morphological MFI zeolites and their properties are also discussed. This review is of great importance for the controllable synthesis of zeolites and rational design of zeolite catalysts.

Abstract Image

增强催化和分离:使用有机添加剂的MFI沸石的形态控制
MFI沸石作为最成功的无机材料之一,在石油化工和精细化工领域得到了广泛的应用。然而,MFI沸石中仅存在微孔会产生扩散障碍,因此无法在涉及大型基质的过程中使用。减轻MFI沸石中的扩散途径是非常可取的。其中一种有效的方法是形态控制策略,这在过去的几十年里已经成为一个热门话题。本文综述了利用特定有机添加剂作为形态改性剂控制MFI分子筛形态以提高催化性能和分离性能的研究进展。有机添加剂包括尿素、氨基酸、有机小分子和聚合物,根据它们诱导的MFI沸石进行了分类。根据特定的添加剂,所产生的形态可以分为纳米晶体、聚集的纳米颗粒、纳米片、共生纳米片、板、共生板、针状和庞大的棱柱状晶体。讨论了不同形态MFI分子筛的形成机理及其性质。这对沸石的可控合成和沸石催化剂的合理设计具有重要意义。
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来源期刊
Sustainable Energy & Fuels
Sustainable Energy & Fuels Energy-Energy Engineering and Power Technology
CiteScore
10.00
自引率
3.60%
发文量
394
期刊介绍: Sustainable Energy & Fuels will publish research that contributes to the development of sustainable energy technologies with a particular emphasis on new and next-generation technologies.
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