In today's world, Dysprosium arsenide is a topic of great relevance and interest to a wide audience. The importance of Dysprosium arsenide is reflected in its impact on society, the economy and culture. Both experts and amateurs show great interest in this topic, seeking to understand its implications and consequences. Furthermore, Dysprosium arsenide is a constantly evolving topic, with new research and developments keeping people interested and engaged in its study. In this article, we will explore Dysprosium arsenide and its influence in different areas in depth, offering a comprehensive vision that allows us to understand its impact in today's world.
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Names | |
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Other names
Dysprosium monoarsenide, arsanylidynedysprosium
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Identifiers | |
3D model (JSmol)
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ChemSpider | |
EC Number |
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PubChem CID
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CompTox Dashboard (EPA)
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Properties | |
AsDy | |
Molar mass | 237.422 g·mol−1 |
Appearance | Crystalline |
Density | g/cm3 |
Related compounds | |
Other anions
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Dysprosium nitride Dysprosium phosphide Dysprosium antimonide Dysprosium bismuthide |
Other cations
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Terbium phosphide Holmium phosphide |
Except where otherwise noted, data are given for materials in their standard state (at 25 °C , 100 kPa).
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Dysprosium arsenide is a binary inorganic compound of dysprosium and arsenide with the chemical formula DyAs.[1][2]
The compound is rock-salt structured, crystallizing in the cubic Fm3m space group.[3]
DyAs could be used as a semiconductor and in photo optic applications.[4][5][dubious – discuss]
DyRuAsO is an arsenide oxide that also include ruthenium.[6]