Hydrated Silicate Ionic Liquids: Ionic Liquids for Silicate Material Synthesis

Fuente: arXiv
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Autores principales: Vandenabeele, Dries, Doppelhammer, Nikolaus, Radhakrishnan, Sambhu, C., Vinod Chandran, Wangermez, Wauter, Rais, Anjul, Vandeurzen, Elisabeth, Jakoby, Bernhard, Kirschhock, Christine, Breynaert, Eric
Formato: Preprint
Publicado: 2024
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author Vandenabeele, Dries
Doppelhammer, Nikolaus
Radhakrishnan, Sambhu
C., Vinod Chandran
Wangermez, Wauter
Rais, Anjul
Vandeurzen, Elisabeth
Jakoby, Bernhard
Kirschhock, Christine
Breynaert, Eric
author_facet Vandenabeele, Dries
Doppelhammer, Nikolaus
Radhakrishnan, Sambhu
C., Vinod Chandran
Wangermez, Wauter
Rais, Anjul
Vandeurzen, Elisabeth
Jakoby, Bernhard
Kirschhock, Christine
Breynaert, Eric
contents The development of Hydrated Silicate Ionic Liquids, which are hypo-hydrated room temperature melts of alkali silicates, has created new opportunities for synthesizing porous silicates. Their discovery also allows to reinterpret the role of an ionic liquid for zeolite synthesis and offer unique opportunities to study crystallization in situ. The reduced complexity of HSILs renders them excellent model systems yielding a large space of zeolite phases and framework compositions, and even allowing computer simulations. This work summarizes the impact of alkalinity, hydration, and cation type on silicate speciation and provides physicochemical data spanning relevant temperatures and compositions for zeolite formation. The data is meant as a reference point to further accommodate and verify (computational) models.
format Preprint
id arxiv_https___arxiv_org_abs_2411_16335
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Hydrated Silicate Ionic Liquids: Ionic Liquids for Silicate Material Synthesis
Vandenabeele, Dries
Doppelhammer, Nikolaus
Radhakrishnan, Sambhu
C., Vinod Chandran
Wangermez, Wauter
Rais, Anjul
Vandeurzen, Elisabeth
Jakoby, Bernhard
Kirschhock, Christine
Breynaert, Eric
Materials Science
Chemical Physics
The development of Hydrated Silicate Ionic Liquids, which are hypo-hydrated room temperature melts of alkali silicates, has created new opportunities for synthesizing porous silicates. Their discovery also allows to reinterpret the role of an ionic liquid for zeolite synthesis and offer unique opportunities to study crystallization in situ. The reduced complexity of HSILs renders them excellent model systems yielding a large space of zeolite phases and framework compositions, and even allowing computer simulations. This work summarizes the impact of alkalinity, hydration, and cation type on silicate speciation and provides physicochemical data spanning relevant temperatures and compositions for zeolite formation. The data is meant as a reference point to further accommodate and verify (computational) models.
title Hydrated Silicate Ionic Liquids: Ionic Liquids for Silicate Material Synthesis
topic Materials Science
Chemical Physics
url https://arxiv.org/abs/2411.16335