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Potassium stannate trihydrate

ALDRICH/462799 - 99.9% trace metals basis

Synonym: Potassium tin(IV) oxide

CAS Number: 12125-03-0
Empirical Formula (Hill Notation): K2O3Sn · 3H2O
Molecular Weight: 298.95
EC Number: 235-255-9
MDL Number: MFCD00150391
Linear Formula: K2SnO3·3H2O
Product Type: Chemical

Catalog Number PKG Qty. Price Quantity
45-462799-250G 250 g
$44.90
1/EA
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45-462799-1KG 1 kg
$131.00
1/EA
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This picture is provided solely for illustration purposes. Optical properties of the actual product may deviate. Relevant product information is printed on labeled products and other accompanying or available information material.

This image depicts SKU: 462799-250G
This picture is provided solely for illustration purposes. Optical properties of the actual product may deviate. Relevant product information is printed on labeled products and other accompanying or available information material.

This image depicts SKU: 462799-1KG

 

assay 99.9% trace metals basis
density 3.197 g/mL at 25 °C (lit.)
form solid
impurities ≤1500.0 ppm Trace Metal Analysis
InChI 1S/2K.3H2O.3O.Sn/h;;3*1H2;;;;/q2*+1;;;;;2*-1;
InChI key HTHDWDSBYOUAFF-UHFFFAOYSA-N
mp 140 °C (dec.) (lit.)
reaction suitability reagent type: catalyst
core: tin
SMILES string O.O.O.[K+].[K+].[O-][Sn]([O-])=O
Application:

  • Study of interaction between H2O molecules and ZTO-ZHS surface: This study explores the interaction of water molecules with zinc stannate and potassium stannate trihydrate surfaces, crucial for understanding their chemical properties and potential applications (EA Levkevich et al., 2020 ).

  • Flexible solid-state supercapacitor based on tin oxide/reduced graphene oxide/bacterial nanocellulose: Discusses the use of potassium stannate trihydrate in the synthesis of high-performance energy storage devices, showcasing the material′s utility in enhancing conductivity and stability (KK Liu et al., 2018 ).

  • Significantly enhanced dye removal performance of hollow tin oxide nanoparticles via carbon coating in dark environment and study of its mechanism: This research investigates the use of potassium stannate trihydrate for the synthesis of tin oxide nanoparticles, which significantly improve dye removal from water (S Yang et al., 2014 ).

  • High Temperature CO2 Capture Performance and Kinetic Analysis of Novel Potassium Stannate: Examines the application of potassium stannate trihydrate in high-temperature CO2 capture, highlighting its potential to enhance the efficiency of carbon capture technologies (R Baird et al., 2023 ).

Packaging: 1 kg in poly bottle
Packaging: 250 g in poly bottle
Hazard Codes Xi
Risk Statements 36/37/38
Safety Statements 26-36
RIDADR NONH for all modes of transport
WGK Germany WGK 3
Flash Point(F) Not applicable
Flash Point(C) Not applicable
Purity 99.9% trace metals basis
mp 140 °C (dec.) (lit.)
Density 3.197 g/mL at 25 °C (lit.)
UNSPSC 12352302

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