Skip to main navigation Skip to search Skip to main content

Diverse Physical States of Amorphous Precursors in Zeolite Sol Gel Syntheses

  • Rui Li
  • , Aseem Chawla
  • , Noemi Linares
  • , James G. Sutjianto
  • , Karena W. Chapman
  • , Javier García Martínez
  • , Jeffrey D. Rimer
  • University of Houston
  • University of Alicante

Research output: Contribution to journalArticlepeer-review

66 Scopus citations

Abstract

The assembly and structural evolution of amorphous precursors during zeolite crystallization is an important area of interest owing to their putative roles in the nucleation and growth of aluminosilicate microporous materials. Precursors range in complexity from oligomeric molecules and colloidal particles to gels comprised of heterogeneous silica and alumina domains. The physical state of precursors in most zeolite syntheses is generally not well understood; however, it is evident that the physicochemical properties of precursors depend on a wide range of conditions that include (but are not limited to) the selection of reagents, the composition of growth mixtures, the methods of preparation, and the use of inorganic and/or organic structure-directing agents. The fact that precursors evolve in size, shape, and/or microstructure during the course of nucleation and potentially throughout crystallization leads to questions pertaining to their mode of action in the formation of zeolites. This also highlights the diversity of species that are present in growth media, thus rendering the topic of zeolite synthesis essentially a black box to those attempting to better understand the fundamental role(s) of precursors. In this Article, we discuss the wide variety of precursors encountered in the synthesis of various framework types, emphasizing their complex physical states and the thermodynamic and kinetic factors that govern their heterogeneity.

Original languageEnglish
Pages (from-to)8460-8471
Number of pages12
JournalIndustrial and Engineering Chemistry Research
Volume57
Issue number25
DOIs
StatePublished - Jun 27 2018

Fingerprint

Dive into the research topics of 'Diverse Physical States of Amorphous Precursors in Zeolite Sol Gel Syntheses'. Together they form a unique fingerprint.

Cite this