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SrMnO3 Thermochromic Behavior Governed by Size-Dependent Structural Distortions
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文摘
The influence of particle size in both the structure and thermochromic behavior of 4H-SrMnOb>3b> related perovskite is described. Microsized SrMnOb>3b> suffers a structural transition from hexagonal (P6b>3b>/mmc) to orthorhombic (C222b>1b>) symmetry at temperature close to 340 K. The orthorhombic distortion is due to the tilting of the corner-sharing Mnb>2b>Ob>9b> units building the 4H structural type. When temperature decreases, the distortion becomes sharper reaching its maximal degree at ∼125 K. These structural changes promote the modification of the electronic structure of orthorhombic SrMnOb>3b> phase originating the observed color change. nano-SrMnOb>3b> adopts the ideal 4H hexagonal structure at room temperature, the orthorhombic distortion being only detected at temperature below 170 K. A decrease in the orthorhombic distortion degree, compared to that observed in the microsample, may be the reason why a color change is not observed at low temperature (77 K).

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