Jain Rishabh, Mallette Adam J, Rimer Jeffrey D
Department of Chemical and Biomolecular Engineering, University of Houston, Houston, Texas 77204, United States.
J Am Chem Soc. 2021 Dec 29;143(51):21446-21460. doi: 10.1021/jacs.1c11014. Epub 2021 Dec 16.
A core objective of synthesizing zeolites for widespread applications is to produce materials with properties and corresponding performances that exceed conventional counterparts. This places an impetus on elucidating and controlling processes of crystallization where one of the most critical design criteria is the ability to prepare zeolite crystals with ultrasmall dimensions to mitigate the deleterious effects of mass transport limitations. At the most fundamental level, this requires a comprehensive understanding of nucleation to address this ubiquitous materials gap. This Perspective highlights recent methodologies to alter zeolite nucleation by using seed-assisted protocols and the exploitation of interzeolite transformations to design advanced materials. Introduction of crystalline seeds in complex growth media used to synthesize zeolites can have wide-ranging effects on the physicochemical properties of the final product. Here we discuss the diverse pathways of zeolite nucleation, recent breakthroughs in seed-assisted syntheses of nanosized and hierarchical materials, and shortcomings for developing generalized guidelines to predict synthesis outcomes. We offer a critical analysis of state-of-the-art approaches to tailor zeolite crystallization wherein we conceptualize whether parallels between network theory and zeolite synthesis can be instrumental for translating key findings of individual discoveries across a broader set of zeolite crystal structures and/or synthesis conditions.
合成用于广泛应用的沸石的一个核心目标是生产出性能超越传统同类产品的材料。这推动了对结晶过程的阐释和控制,其中最关键的设计标准之一是制备超小尺寸沸石晶体的能力,以减轻传质限制的有害影响。在最基本的层面上,这需要全面理解成核过程,以弥补这一普遍存在的材料差距。本观点文章重点介绍了通过种子辅助方法和利用沸石间转化来改变沸石成核的最新方法,以设计先进材料。在用于合成沸石的复杂生长介质中引入晶种会对最终产物的物理化学性质产生广泛影响。在此,我们讨论了沸石成核的多种途径、种子辅助合成纳米材料和分级材料的最新突破,以及制定预测合成结果的通用指南的不足之处。我们对定制沸石结晶的现有方法进行了批判性分析,在此过程中,我们思考网络理论与沸石合成之间的相似性是否有助于将各个发现的关键结果推广到更广泛的沸石晶体结构和/或合成条件中。