AgCl
Type: Volume Composition show more
ObjectId: 4373 ExternalId: 3282
Created: 2/1/2023 3:33:15 PM by Vic) Dudarev Victor [vic_dudarev@mail.ru]
Access: Public Sort Code (asc): 0
Description: AgCl
[no file attached]
: Ag-Cl
Composition
| Element | Absolute | Percentage | |
|---|---|---|---|
| Ag | 1 | 50 % | |
| Cl | 1 | 50 % |
Associated Objects
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Crystal Chemical, Physical-Chemical and Physical Properties of Semicon
Literature ReferenceCrystal Chemical, Physical-Chemical and Physical Properties of Semiconducting Substances. Handbook. Standard Publ., Moscow
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Landolt-Bornstein. Numerical Data and Functional Relationships in Scie2
Literature ReferenceLandolt-Bornstein. Numerical Data and Functional Relationships in Science and Technology. New Ser. Group III: Crystal and Solid State Physics. V.17. Semiconductors. Subv.b: Physics of II-VI Compounds, Semimagnetic Semiconductors. Springer-Verlag, Berlin-He
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Nikogosyan D.N. Properties of optical and laser-related materials. A h
Literature ReferenceNikogosyan D.N. Properties of optical and laser-related materials. A handbook. John Wiley & Sons, Chichester-New York-Weinheim-Brisbane-Singapore-Toronto
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Physical Properties. Handbook. Ed. By I.S.Grigor'ev&E.Z.Meilikhov. Mos
Literature ReferencePhysical Properties. Handbook. Ed. By I.S.Grigor'ev&E.Z.Meilikhov. Moscow, Energoatomizdat
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Strehlow W.H.,Cook E.L. Compilation of Energy Band Gaps in Elemental a
Literature ReferenceStrehlow W.H.,Cook E.L. Compilation of Energy Band Gaps in Elemental and Binary Compound Semiconductors and Insulators
All properties (except table)
No properties found
The table
| Eg | IsCalculated | ReferenceId | Temperature | CrystalSystem | StructureType | SpaceGroup | Comment |
|---|---|---|---|---|---|---|---|
| 4.1 | 0 | 30 | |||||
| 3.249 | 0 | 32 | 2 | ||||
| 3.2468 | 0 | 32 | 6.8 | ||||
| 3 | 0 | 30 | 300 | ||||
| 3 | 0 | 37 | 300 | ||||
| 3 | 0 | 72 | 298 | Cubic | |||
| 3.1 | 0 | 72 | 298 | Cubic | |||
| 3.3 | 0 | 72 | 298 | Cubic | |||
| 3.22 | 0 | 581 | 0 | Cubic | NaCl | Fm3(-)m | Optical absorption spectroscopy. Indirect transition. Single crystal |
| 5.1 | 0 | 581 | 0 | Cubic | NaCl | Fm3(-)m | Estimation |
| 3.246 | 0 | 581 | 4.2 | Cubic | NaCl | Fm3(-)m | Optical absorption spectroscopy. Indirect transition. Single crystal |
| 3.25 | 0 | 581 | 4.2 | Cubic | NaCl | Fm3(-)m | Optical absorption spectroscopy. Indirect transition. Single crystal |
| 3.252 | 0 | 581 | 4.2 | Cubic | NaCl | Fm3(-)m | Optical absorption spectroscopy. Indirect transition. Single crystal |
| 3.22 | 0 | 581 | 77 | Cubic | NaCl | Fm3(-)m | Optical absorption spectroscopy. Indirect transition. Single crystal |
| 3.226 | 0 | 581 | 77 | Cubic | NaCl | Fm3(-)m | Optical absorption spectroscopy. Indirect transition. Single crystal |
| 3.08 | 0 | 581 | 300 | Cubic | NaCl | Fm3(-)m | Optical absorption spectroscopy. Indirect transition. Single crystal |
| 3.25 | 0 | 581 | 300 | Cubic | NaCl | Fm3(-)m | Optical absorption spectroscopy. Indirect transition. Single crystal |
| 5.13 | 0 | 581 | 300 | Cubic | NaCl | Fm3(-)m | Optical absorption spectroscopy. Single crystal |