Cermet catalysts formed via exsolution of metal nanoparticles from perovskites promise to perform better in electro- and thermochemical applications than those synthesized by conventional wet-chemical approaches. However, a shortage of robust material design principles still stands in the way of widespread commercial adoption of exsolution. Working with Ni-doped SrTiO3 solid solutions, we investigated how the introduction of Sr deficiency as well as Ca, Ba, and La doping on the Sr site changed the size and surface density of exsolved Ni nanoparticles. We carried out exsolution on 11 different compositions under fixed conditions. We elucidated the effect of A-site defect size/valence on nanoparticle density and size as well as the effect of composition on nanoparticle immersion and ceramic microstructure. Based on our experimental results, we developed a model that quantitatively predicted a composition’s exsolution properties using density functional theory calculations. The model and calculations provide insights into the exsolution mechanism and can be used to find new compositions with high exsolution nanoparticle density.

O'Leary, W., Giordano, L., Park, J., Nonnenmann, S., Shao-Horn, Y., Rupp, J. (2023). Influence of Sr-Site Deficiency, Ca/Ba/La Doping on the Exsolution of Ni from SrTiO3. JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 145(25), 13768-13779 [10.1021/jacs.2c12011].

Influence of Sr-Site Deficiency, Ca/Ba/La Doping on the Exsolution of Ni from SrTiO3

Giordano L.;
2023

Abstract

Cermet catalysts formed via exsolution of metal nanoparticles from perovskites promise to perform better in electro- and thermochemical applications than those synthesized by conventional wet-chemical approaches. However, a shortage of robust material design principles still stands in the way of widespread commercial adoption of exsolution. Working with Ni-doped SrTiO3 solid solutions, we investigated how the introduction of Sr deficiency as well as Ca, Ba, and La doping on the Sr site changed the size and surface density of exsolved Ni nanoparticles. We carried out exsolution on 11 different compositions under fixed conditions. We elucidated the effect of A-site defect size/valence on nanoparticle density and size as well as the effect of composition on nanoparticle immersion and ceramic microstructure. Based on our experimental results, we developed a model that quantitatively predicted a composition’s exsolution properties using density functional theory calculations. The model and calculations provide insights into the exsolution mechanism and can be used to find new compositions with high exsolution nanoparticle density.
Articolo in rivista - Articolo scientifico
Density functional theory; Nickel; Nickel compounds; Perovskite; Strontium; Strontium titanates; Synthesis (chemical)
English
15-giu-2023
2023
145
25
13768
13779
none
O'Leary, W., Giordano, L., Park, J., Nonnenmann, S., Shao-Horn, Y., Rupp, J. (2023). Influence of Sr-Site Deficiency, Ca/Ba/La Doping on the Exsolution of Ni from SrTiO3. JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 145(25), 13768-13779 [10.1021/jacs.2c12011].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10281/525785
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