Investigating cerium redox changes between aluminosilicate glass and melt: A multispectroscopic approach

Author:

Donatini Adrien123ORCID,Georges Peggy1,Fevre Tiphaine1ORCID,Cormier Laurent2ORCID,Neuville Daniel R.3ORCID

Affiliation:

1. Corning European Technology Center 1 , 77210 Avon, France

2. Sorbonne Université, Muséum National d’Histoire Naturelle, UMR CNRS 7590, IRD, Institut de Minéralogie, de Physique des Matériaux et de Cosmochimie, IMPMC 2 , 75005 Paris, France

3. Géomatériaux, CNRS-IPGP, Université de Paris 3 , 75005 Paris, France

Abstract

Redox control of glasses is paramount both to their fusion process and to obtaining the desired properties of high technological glasses. However, the link between melting parameters, such as temperature, furnace atmosphere, or quenching rate, and the redox state of the final products is poorly understood. In this work, in situ x-ray absorption near-edge structure (XANES) data at Ce L3-edge data were acquired at high temperatures on cerium-containing sodium aluminosilicate glasses, allowing the determination of thermodynamic constants necessary to predict the cerium redox state over a wide temperature range (900–1500 °C). The results obtained were compared to the Raman spectra of samples quenched at different temperatures. Our findings demonstrate that the quench performed was fast enough to block the cerium oxidation state, meaning the redox measured at room temperature is representative of a high temperature state. This was further verified by room temperature Raman spectroscopy, where a relationship was found between the spectra and melting conditions. Wet chemical analysis, XANES at Ce L3-edge, Raman spectroscopy, and optical absorption spectroscopy were successfully used to determine the redox state of cerium in aluminosilicates.

Funder

Association Nationale de la Recherche et de la Technologie

Publisher

AIP Publishing

Cited by 1 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Influence of cerium addition and redox state on silicate structure and viscosity;Journal of the American Ceramic Society;2024-08-29

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