Chemodex

Potassium Ionophore III

CHF 193.00
In stock
CDX-P0235-M02525 mgCHF 193.00
CDX-P0235-M100100 mgCHF 516.00
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Product Details
Synonyms K+ Ionophore III; 2-Dodecyl-2-methyl-1,3-propanediyl bis[N-[5'-nitro(benzo-15-crown-5)-4'-yl]carbamate]; BME 44
Product Type Chemical
Properties
Formula C46H70N4O18
MW 967.06
CAS 99348-39-7
Source/Host Chemicals Synthetic
Purity Chemicals ≥98%
Appearance Yellow powder.
Solubility Soluble in chloroform.
Identity Determined by 1H-NMR.
Declaration Manufactured by Chemodex.
Other Product Data

Click here for Original Manufacturer Product Datasheet
Our product description may differ slightly from the original manufacturers product datasheet.

InChi Key ATWXVVNLVXXTQN-UHFFFAOYSA-N
Smiles CCCCCCCCCCCCC(COC(NC1=CC2=C(C=C1[N+]([O-])=O)OCCOCCOCCOCCO2)=O)(COC(NC3=C([N+]([O-])=O)C=C4OCCOCCOCCOCCOC4=C3)=O)C
Shipping and Handling
Shipping AMBIENT
Short Term Storage +4°C
Long Term Storage -20°C
Handling Advice Protect from light and moisture.
Use/Stability Stable for at least 2 years after receipt when stored at -20°C.
Documents
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Product Specification Sheet
Datasheet Download PDF
Description

Potassium Ionophore III (K+ Ionophore III) is a ionophore used in solvent polymeric membrane electrodes for the assay of K+, especially in body fluids. It has been used to study the transport of potassium ions across cell membranes, as well as the effects of potassium ions on the activity of enzymes and other proteins. Additionally, this ionophore has been shown to increase the uptake of potassium ions into cells, which can lead to increased cellular metabolism, growth, and developmental processes.

Product References

(1) E. Lindner, et al.; Microchim. Acta 100, 157 (1990) | (2) M. Brasuel, et al.; Anal. Chem. 73, 2221 (2001) | (3) R.D. Johnson, et al.; Anal. Chem. 73, 3940 (2001) | (4) N. Garcia-Villar, et al.; Fresenius J. Anal. Chem. 371, 1001 (2001) | (5) N. Ye, et al.; Anal. Chim. Acta 596, 195 (2007) | (6) M. Sessolo, et al.; Adv. Mater. 26, 4803 (2014) | (7) A. Sahari, et al.; Anal. Chem. 87, 10684 (2015) | (8) C.H. Lee, et al.; Anal. Chem. 89, 7943 (2017) | (9) B. Brady, et al.; Analyst 146, 6119 (2021) | (10) T. Li, et al.; ACS Nano. 16, 12049 (2022)

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