In today's article, we are going to explore Hafnium phosphide in detail and everything you need to know about it. Hafnium phosphide is a topic that has captured the attention of many people in recent times, and that is why we want to delve into its most relevant aspects. From its impact on society to its evolution over time, we will address every aspect of Hafnium phosphide so you can have a full understanding of its importance. Whether you have a particular interest in Hafnium phosphide or just want to stay up to date with the latest news, this article will provide you with all the information you need. Read on to discover more about Hafnium phosphide and its implications in today's world!
| Names | |
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| IUPAC name
Phosphanylidynehafnium
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Other names
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| Identifiers | |
3D model (JSmol)
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| ChemSpider | |
| ECHA InfoCard | 100.032.343 |
| EC Number |
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| Properties | |
| HfP | |
| Molar mass | 209.464 g/mol[1] |
| Appearance | Crystalline solid |
| Density | 9.78 g/cm3[2] |
| log P | 0.30[3] |
| Structure | |
| Hexagonal | |
| Related compounds | |
Related compounds
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Hafnium(III) phosphide |
Except where otherwise noted, data are given for materials in their standard state (at 25 °C , 100 kPa).
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Hafnium phosphide (HfP) is a binary inorganic compound of hafnium metal and phosphorus.
It can be obtained by heating together hafnium powder and red phosphorus in sealed quartz tube under vacuum at high temperatures.[4]
The compound is a semiconductor used in high power, high frequency applications and in laser diodes.[5]
Silica-supported hafnium phosphide (HfP/SiO2) was used as a solid acid catalyst to drive furfural production from xylan.[6][7]