结晶
钨
焦绿石
成核
材料科学
水热合成
结晶学
相(物质)
氧化物
晶体结构
无机化学
亚稳态
化学工程
热液循环
化学
冶金
有机化学
工程类
作者
Mikkel Juelsholt,Olivia Aalling‐Frederiksen,Troels Lindahl Christiansen,Emil T. S. Kjær,Niels Lefeld,Andrea Kirsch,Kirsten M. Ø. Jensen
标识
DOI:10.26434/chemrxiv-2023-vtfq8-v2
摘要
Understanding material nucleation processes is crucial for the development of synthesis pathways for tailormade materials. However, we currently have little knowledge of the influence of the precursor solution structure on the formation pathway of materials. We here use in situ total scattering to show how the precursor solution structure influences which crystal structure is formed during the hydrothermal synthesis of tungsten oxides. We investigate the synthesis of tungsten oxide from the two polyoxometalate salts, ammonium metatungstate and ammonium paratungstate. In both cases, a hexagonal ammonium tungsten bronze (NH4)0.25WO3, is formed as the final product. If the precursor solution contains metatungstate clusters, this phase forms directly in the hydrothermal synthesis. However, if the paratungstate B cluster is present at the time of crystallization, a metastable intermediate phase in the form of a pyrochlore-type tungsten oxide, WO30*5H2O, initially forms. The pyrochlore structure then undergoes a phase transformation into the tungsten bronze phase. Our studies thus experimentally show that the precursor cluster structure present at the moment of crystallization directly influences the formed crystalline phase and suggest that the precursor structure just prior to crystallization can be used as a tool for targeting specific crystalline phases of interest.
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