2023
DOI: 10.1021/acsami.3c14270
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Protonation-Induced Colossal Lattice Expansion in La2/3Sr1/3MnO3

Muhammad Umer Fayaz,
Qian Wang,
Shixuan Liang
et al.
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Cited by 2 publications
(4 citation statements)
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“…Our group recently discovered a significant lattice expansion in La 2/3 Sr 1/3 MnO 3 (LSMO) through hydrogenation using IL gating. This expansion, observed under tensile strain conditions, is attributed to enhanced proton diffusion, leading to notable elongation in the Mn–O bond and octahedral tilting, which is supported by density functional theory calculations (Figure a) . We also observed strain dependent uphill and normal hydrogen distribution in perovskite oxide films .…”
Section: Electrolyte Based Ionic Control Of Physical Properties Of Fu...supporting
confidence: 79%
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“…Our group recently discovered a significant lattice expansion in La 2/3 Sr 1/3 MnO 3 (LSMO) through hydrogenation using IL gating. This expansion, observed under tensile strain conditions, is attributed to enhanced proton diffusion, leading to notable elongation in the Mn–O bond and octahedral tilting, which is supported by density functional theory calculations (Figure a) . We also observed strain dependent uphill and normal hydrogen distribution in perovskite oxide films .…”
Section: Electrolyte Based Ionic Control Of Physical Properties Of Fu...supporting
confidence: 79%
“…The results show that in the low temperature phase separation region, the electroresistance is significantly enhanced and also have dependence on the applied magnetic field . Our research group has found that hydrogenation of LSMO using IL that alters the band structure of the films, enabling the tuning of resistivity and magnetism strength by up to 5 orders of magnitude . Recent work on superlattices with alternating one-unit cell SrIrO 3 and La 0.2 Sr 0.8 MnO 3 films also exhibit a reversible control of resistivity through the electric field induced migration of O 2– and H + ions (Figure d) .…”
Section: Electrolyte Based Ionic Control Of Physical Properties Of Fu...mentioning
confidence: 92%
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“…Comparing NNO and LSMO both grown on the LAO substrate (Figure b vs Figure d), it can reasonably be speculated that larger compressive strain facilitates Fick’s diffusion phenomena. We also noticed other investigations on the hydrogenation of the LSMO/STO system with different methods, including Pt-catalyzed spillover reaction and ILG, which exhibit different hydrogen distribution from Figure c. Therefore, it should be clarified that strain is not the only factor determining the hydrogen distribution.…”
Section: Resultsmentioning
confidence: 72%