Atomic Resolution Electron Microscopy: A Key Tool for Understanding the Activity of Nano-Oxides for Biomedical Applications

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Azor-Lafarga, Alberto and Gómez-Recio, Isabel and Ruiz-González, María Luisa and Gonzalez-Calbet, José M. (2021) Atomic Resolution Electron Microscopy: A Key Tool for Understanding the Activity of Nano-Oxides for Biomedical Applications. Nanomaterials, 11 . ISSN 2079-4991

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Official URL: https://doi.org/10.3390/nano11082073



Abstract

Transition metal oxides constitute one of the most fruitful sources of materials with continuously increasing potential applications prompted by the expectations derived from the reduction of the particle size. The recent advances in transmission electron microscopy, because of the development of lenses, have made it possible to reach atomic resolution, which can provide answers regarding the performance of the transition metal nano-oxides. This critical information is related not only to the ability to study their microstructural characteristics but also their local composition and the oxidation state of the transition metal. Exploring these features is a well-known task in nano-oxides for energy and electronic technologies, but they are not so commonly used for elucidating the activity of these oxides for biomedical applications. Nevertheless, the identification at the atomic level of a certain dopant or the unambiguous determination of the oxidation state of a transition metal in a nano-oxide can be important questions to be answered in a certain biomedical application. In this work, we provide several examples in transition metal nano-oxides to show how atomic-resolution electron microscopy can be a key tool for its understanding.


Item Type:Article
Uncontrolled Keywords:transition metal oxides; electron microscopy; atomic resolution; EELS; hollandite related mangnese oxides
Subjects:Sciences > Chemistry > Chemistry, Inorganic
ID Code:78570
Deposited On:24 May 2023 11:17
Last Modified:24 May 2023 11:17

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