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Magnetic oxygen stored in quasi-1D form within BaAl2O4 lattice (CROSBI ID 270079)

Prilog u časopisu | izvorni znanstveni rad | međunarodna recenzija

Vrankić, Martina ; Šarić, Ankica ; Bosnar, Sanja ; Pajić, Damir ; Dragović, Jure ; Altomare, Angela ; Falcicchio, Aurelia ; Popović, Jasminka ; Jurić, Marijana ; Petravić, Mladen et al. Magnetic oxygen stored in quasi-1D form within BaAl2O4 lattice // Scientific reports, 9 (2019), 1; 15158, 10. doi: 10.1038/s41598-019-51653-4

Podaci o odgovornosti

Vrankić, Martina ; Šarić, Ankica ; Bosnar, Sanja ; Pajić, Damir ; Dragović, Jure ; Altomare, Angela ; Falcicchio, Aurelia ; Popović, Jasminka ; Jurić, Marijana ; Petravić, Mladen ; Jelovica Badovinac, Ivana ; Dražić, Goran

engleski

Magnetic oxygen stored in quasi-1D form within BaAl2O4 lattice

Inorganic materials that enable a link between the storage and release of molecular oxygen offer a fertile ground in continuous quest for the applications that can potentially reduce energy consumption and thus minimize adverse effects on the environment. Herein, we address reversible intake/release of an oxygen within the BaAl2O4 material as evidenced by unexpected magnetic ordering. Magnetic measurements unveil that an oxygen is stored in the form of condensed matter, creating a kind of low dimensional, chain-like assembly within the tunnels of BaAl2O4 structure. We demonstrate that oxygen is adsorbed simply by staying in air, at ambient conditions, and released relatively quickly by staying in the He or other gas atmosphere of several millibars pressure even at 300 K.

crystallography ; magnetism ; oxide ; ceramic material ; structure-property relationship ; temperature dependence ; cryogenic temperature ; dielectric ; polycrystal ; X-ray photoelectron spectroscopy ; X-ray diffraction ; Structure ; Low dimensional oxygen storage

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Podaci o izdanju

9 (1)

2019.

15158

10

objavljeno

2045-2322

10.1038/s41598-019-51653-4

Povezanost rada

Fizika, Kemija

Poveznice
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