About disodium;tetrakis(dioxosilane);oxygen(2-)
disodium;tetrakis(dioxosilane);oxygen(2-) (PubChem CID 13457365) has the molecular formula Na2O9Si4
and a molecular weight of 302.32 g/mol. Its IUPAC name is disodium;tetrakis(dioxosilane);oxygen(2-).
Molecular Properties
| Compound Name | disodium;tetrakis(dioxosilane);oxygen(2-) |
| PubChem CID | 13457365 |
| Molecular Formula | Na2O9Si4 |
| Molecular Weight | 302.32 g/mol |
| Exact Mass | 301.84 |
| IUPAC Name | disodium;tetrakis(dioxosilane);oxygen(2-) |
| SMILES | O=[Si]=O.O=[Si]=O.O=[Si]=O.O=[Si]=O.[Na+].[Na+].[O-2] |
| InChI | InChI=1S/2Na.4O2Si.O/c;;4*1-3-2;/q2*+1;;;;;-2 |
| InChIKey | BJYUWLPKZWTUFD-UHFFFAOYSA-N |
| XLogP | -8.58 |
| TPSA | 165.06 Ų |
| H-Bond Donors | |
| H-Bond Acceptors | 8 |
| Rotatable Bonds | |
| Heavy Atoms | 15 |
| Complexity | — |
Lipinski Rule of Five
Passes Rule of Five
| Rule | Value |
| MW ≤ 500 | 302.32 |
| LogP ≤ 5 | -8.58 |
| H-Bond Donors ≤ 5 | 0 |
| H-Bond Acceptors ≤ 10 | 8 |
Computed Properties (RDKit)
| Structural Alerts | {'alert_name': 'heavy_metal', 'substructure': 'N/A'} |
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Frequently Asked Questions
What is the IUPAC name of disodium;tetrakis(dioxosilane);oxygen(2-)?
The IUPAC name of disodium;tetrakis(dioxosilane);oxygen(2-) (CID 13457365) is disodium;tetrakis(dioxosilane);oxygen(2-).
What is the SMILES notation for disodium;tetrakis(dioxosilane);oxygen(2-)?
The canonical SMILES for disodium;tetrakis(dioxosilane);oxygen(2-) is O=[Si]=O.O=[Si]=O.O=[Si]=O.O=[Si]=O.[Na+].[Na+].[O-2].
What is the InChIKey of disodium;tetrakis(dioxosilane);oxygen(2-)?
The InChIKey is BJYUWLPKZWTUFD-UHFFFAOYSA-N. The full InChI is InChI=1S/2Na.4O2Si.O/c;;4*1-3-2;/q2*+1;;;;;-2.
What are the key properties of disodium;tetrakis(dioxosilane);oxygen(2-)?
disodium;tetrakis(dioxosilane);oxygen(2-) has a molecular weight of 302.32 g/mol, XLogP of -8.58, 0 rotatable bonds, 0 hydrogen bond donors, and 8 hydrogen bond acceptors.
Where does this data come from?
All data for disodium;tetrakis(dioxosilane);oxygen(2-) is sourced from PubChem (CID 13457365), the world's largest open chemistry database maintained by the National Library of Medicine (NIH).