Storage Condition
Store at refrigerator (2-8ยฐC) for long term storage
Synonyms
Perdeuterofluorene
Application Notes
Useful research chemical for a range of applications
Hazard Compound
Yes -Refer MSDS for accurate information
Fluorene-d10 is a drug product that is used as an analytical standard for HPLC, as well as in research and development of drugs.
Refund Policy
We are committed to offering products of the highest quality in order to meet the needs of our customers, and have elaborate systems in
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Fluorene-d10 usage and description
Fluorene-D10 is a deuterated derivative of fluorene, a polycyclic aromatic hydrocarbon (PAH) that contains two benzene rings fused together. Fluorene-D10 is a stable isotope of fluorene, where ten of the twelve hydrogen atoms in the molecule are replaced by deuterium atoms. This modification makes Fluorene-D10 a useful tool for studying the chemical and physical properties of fluorene and its derivatives.
Fluorene-D10 is commonly used as a reference standard in nuclear magnetic resonance (NMR) spectroscopy and mass spectrometry (MS) techniques. The deuterium atoms in Fluorene-D10 provide a distinct chemical shift in NMR spectra, which can be used to identify and quantify fluorene and its derivatives in complex mixtures. Additionally, the use of Fluorene-D10 as an internal standard in MS analysis can improve the accuracy and precision of quantitative measurements.
Chemically, Fluorene-D10 has similar properties to fluorene, including its ability to undergo photochemical reactions and form adducts with electrophiles. However, the deuterium substitution can affect the reactivity and selectivity of these reactions, making Fluorene-D10 a valuable tool for investigating the mechanisms and kinetics of these processes.
In summary, Fluorene-D10 is a useful tool for studying the chemical and physical properties of fluorene and its derivatives, particularly in NMR spectroscopy and mass spectrometry. Its deuterium substitution can provide unique insights into the reactivity and selectivity of chemical reactions involving fluorene.