Stable Isotope Reagent Product Detail

Bromopyruvic Acid-C13

Chemical Properties and Information

Product Code: CS-T-103849 Stable Isotope Reagent
Bromopyruvic Acid-C13
API Family
--
Product Code
CS-T-103849

Bromopyruvic Acid-C13

Stable Isotope Reagent
Stock Status: : Enquire Live

CAT No.
CS-T-103849
CAS No.
1173018-50-2
Molecular Formula
C₂C¹³ H₃BrO₃
Molecular Weight
154.95
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There is no hazardous surcharge associated with this product.
There is no packaging charge associated with this product.
For Research Purposes only. Not for Personal use.
All compounds supplied are strictly intended for laboratory, research, analytical, and scientific use only. They are not meant for human consumption, therapeutic use, or any form of clinical application.
CAS No.
1173018-50-2
Product Code
CS-T-103849
M.F.
C₂C¹³ H₃BrO₃
M.W.
154.95
Smiles
O=C([13C](O)=O)CBr
Category
Stable Isotope Reagent
API Family
-
Storage Condition
Refer MSDS for complete information.
IUPAC Name
3-Bromo-2-oxopropanoic Acid-C13
References
Salnikov, O.G., et.al.: Journal of Physical Chemistry C. 122(43), 24740-24749 (2018); Shchepin, R.V., et.al.: Journal of Labelled Compounds and Radiopharmaceuticals. 57(8), 517-524 (2014);
Synonyms
3-Bromo-2-oxopropanoic Acid-C13; 3-Bromopyruvic Acid-C13; 3-Bromo-2-oxo-propionic Acid-C13; 3-Bromopyruvate-C13; NSC 1173-C13; NSC 62343-C13; β-Bromopyruvic Acid-C13
Application Notes
Bromopyruvic Acid-C13 is the labeled analog of Bromopyruvic Acid (1113-59-3 #CAS). It is used to determine the effects of deuteration of 13C-enriched phospholactate on efficiency of parahydrogen-induced polarization by magnetic field cycling. It has also found uses in researching different approaches for the delivery of metabolic contrast agents for in vivo molecular imaging.
Hazard Compound
Refer MSDS for complete information.
Overview
Bromopyruvic Acid-C13 is the labeled analog of Bromopyruvic Acid (1113-59-3 #CAS). It is used to determine the effects of deuteration of 13C-enriched phospholactate on efficiency of parahydrogen-induced polarization by magnetic field cycling. It has also found uses in researching different approaches for the delivery of metabolic contrast agents for in vivo molecular imaging.
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