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Structure

Sodium tetrachloroaurate (III) dihydrate

CAS
13874-02-7
Catalog Number
ACM13874027
Category
Metal & Ceramic Materials
Molecular Weight
397.786g/mol
Molecular Formula
AuCl4H4NaO2;

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Specification

Synonyms
SODIUM TETRACHLOROAURATE (III) DIHYDRATE; 13874-02-7; OEERDTKOVZFOHF-UHFFFAOYSA-J; AKOS015914384; KS-00000V2L; I14-41610; Sodium tetrachloroaurate(iii)dihydrate;
IUPAC Name
sodium;tetrachlorogold(1-);dihydrate;
Canonical SMILES
O.O.[Na+].Cl[Au-](Cl)(Cl)Cl;
InChI
InChI=1S/Au.4ClH.Na.2H₂O/h;4*1H;;2*1H2/q+3;;;;;+1;;/p-4;
InChI Key
OEERDTKOVZFOHF-UHFFFAOYSA-J;
Application
Photography, staining fine glass, decorating porcelain, medicine.
Complexity
19.1
Covalently-Bonded Unit Count
4
Exact Mass
397.85g/mol
H-Bond Acceptor
3
H-Bond Donor
2
Heavy Atom Count
8
Monoisotopic Mass
395.853g/mol
Topological Polar Surface Area
2A^2
What is the molecular formula of Sodium tetrachloroaurate (III) dihydrate?

The molecular formula is AuCl4H4NaO2.

What is the PubChem CID of Sodium tetrachloroaurate (III) dihydrate?

The PubChem CID is 18949434.

What is the molecular weight of Sodium tetrachloroaurate (III) dihydrate?

The molecular weight is 397.8 g/mol.

What are the component compounds of Sodium tetrachloroaurate (III) dihydrate?

The component compounds are the tetrachloroaurate ion (CID 27128), sodium (CID 5360545), and water (CID 962).

What is the IUPAC name of Sodium tetrachloroaurate (III) dihydrate?

The IUPAC name is sodium;tetrachlorogold(1-);dihydrate.

What is the InChI of Sodium tetrachloroaurate (III) dihydrate?

The InChI is InChI=1S/Au.4ClH.Na.2H2O/h;4*1H;;2*1H2/q+3;;;;;+1;;/p-4.

What is the InChIKey of Sodium tetrachloroaurate (III) dihydrate?

The InChIKey is OEERDTKOVZFOHF-UHFFFAOYSA-J.

What is the canonical SMILES of Sodium tetrachloroaurate (III) dihydrate?

The canonical SMILES is O.O.[Na+].Cl[Au-](Cl)(Cl)Cl.

What is the hydrogen bond donor count of Sodium tetrachloroaurate (III) dihydrate?

The hydrogen bond donor count is 2.

Is Sodium tetrachloroaurate (III) dihydrate a canonicalized compound?

Yes, it is a canonicalized compound.

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