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Perovskite mineral, molecular model C016 / 5803

Perovskite mineral, molecular model C016  /  5803


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Perovskite mineral, molecular model C016 / 5803

Perovskite mineral, molecular model. Perovskite is a mineral form of calcium titanate, with the chemical formula Ca.Ti.O3. The structure shown here is the unit cell, with cations (positive ions) and anions (negative ions). The ions are colour-coded: calcium (blue, 2+ cation), titanium (green, 4+ cation), oxygen (yellow, 2- anion). The pseudocubic crystals crystallize in the orthorhombic system. Physical properties include superconductivity, magneto-resistance, ionic conductivity, and dielectric properties. This makes perovskite of great importance in microelectronics and telecommunications

Science Photo Library features Science and Medical images including photos and illustrations

Media ID 9206805

© RAMON ANDRADE 3DCIENCIA/SCIENCE PHOTO LIBRARY

Atom Bond Bonds Calcium Crystal Crystalline Crystals Dielectric Earth Science Electronics Graphic Metallic Metals Mineral Mineralogy Oxide Oxygen Structural Titanium Unit Cell Cation Cutouts Molecular Model Orthorhombic


EDITORS COMMENTS
This print showcases a molecular model of the Perovskite mineral, specifically the C016 / 5803 structure. Perovskite is an intriguing mineral form of calcium titanate, characterized by its chemical formula Ca. Ti. O3. The image depicts the unit cell of this mineral, highlighting both cations (positive ions) and anions (negative ions). Each ion is color-coded for clarity: calcium appears in blue as a 2+ cation, titanium in green as a 4+ cation, and oxygen in yellow as a 2- anion. Perovskite crystals possess remarkable physical properties that make them highly significant in various fields such as microelectronics and telecommunications. These properties include superconductivity, magneto-resistance, ionic conductivity, and dielectric properties. The crystal structure itself exhibits pseudocubic characteristics while crystallizing within the orthorhombic system. The intricate artwork against a white background beautifully captures the essence of perovskite's structural complexity. This molecular model represents not only its metallic nature but also serves to emphasize its importance within scientific research. With applications ranging from electronics to earth science and beyond, perovskite continues to captivate scientists worldwide due to its unique combination of properties. RAMON ANDRADE's stunning visual representation provides us with a glimpse into this fascinating world at the atomic level – where bonds are formed between metals and oxygen atoms amidst intricate cutouts that showcase perovskite's beauty on both macroscopic and microscopic scales.

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