(1R)-(-)-menthyl chloroformate - CAS 14602-86-9

(1R)-(-)-menthyl chloroformate is a chiral resolution reagent to separate racemic compounds into different mirror isomers and is an important tool for the production of optically active drugs.

Product Information

Canonical SMILES
CC(C)[C@@H]1CC[C@@H](C)C[C@H]1OC(Cl)=O
InChI
InChI=1S/C11H19ClO2/c1-7(2)9-5-4-8(3)6-10(9)14-11(12)13/h7-10H,4-6H2,1-3H3
InChI Key
KIUPCUCGVCGPPA-UHFFFAOYSA-N
Purity
>97.0%(T)
MDL
MFCD00009694
Physical State
Liquid
Appearance
Colorless to yellow liquid
Storage
Sealed in dry. Keep cold.
Boiling Point
109 ℃ / 11 mmHg
Melting Point
12.62 ℃(Predicted)
Flash Point
70 °C(158 °F)
Density
108
Optical Activity
-78° (neat)
Refractive Index
1.46
Hazard Class
6.1 / 8
TSCA
No
WGK Germany
3
Packing Groups
II

Safety Information

Signal Word
Danger
Precautionary Statement
P210 - P235 - P260 - P264b - P271 - P280 - P301+P330+P331 - P303+P361+P353 - P304+P340 - P305+P351+P338 - P310 - P363 - P370+P378q - P501c
Hazard Statements
H227 - H314 - H331

Reference Reading

1. Indirect enantioseparation of fluoxetine in mouse serum by derivatization with 1r-(-)-menthyl chloroformate followed by ultra high performance liquid chromatography and quadrupole time-of-flight mass spectrometry.
Jing Zhao, Yujin Shin, Jeongmi Lee, Yan Jin, Kyung Min Jeong. J Sep Sci. 2016 Mar; 39(6): 1041-9. DOI: 10.1002/jssc.201501163. PMID: 26834028.
Here we describe a simple and sensitive analytical method for the enantioselective quantification of fluoxetine in mouse serum using ultra high performance liquid chromatography with quadrupole time-of-flight mass spectrometry. The sample preparation method included a simple deproteinization with acetonitrile in 50 μL of serum, followed by derivatization of the extracts in 50 μL of 2 mM 1R-(-)-menthyl chloroformate at 45ºC for 55 min. These conditions were statistically optimized through response surface methodology using a central composite design. Under the optimized conditions, neither racemization nor kinetic resolution occurred. The derivatized diastereomers were readily resolved on a conventional sub-2 μm C18 column under a simple gradient elution of aqueous methanol containing 0.1% formic acid. The established method was validated and found to be linear, precise, and accurate over the concentration range of 5.0-1000.0 ng/mL for both R and S enantiomers (r(2) > 0.993). Stability tests of the prepared samples at three different concentration levels showed that the R- and S-fluoxetine derivatives were relatively stable for 48 h. No significant matrix effects were observed. Last, the developed method was successfully used for enantiomeric analysis of real serum samples collected at a number of time points from mice administered with racemic fluoxetine.
The molarity calculator equation

Mass (g) = Concentration (mol/L) × Volume (L) × Molecular Weight (g/mol)

The dilution calculator equation

Concentration (start) × Volume (start) = Concentration (final) × Volume (final)

This equation is commonly abbreviated as: C1V1 = C2V2

Related Products

USA
  • International:
  • US & Canada (Toll free):
  • Email:
  • Fax:
UK
  • Email:
Copyright © 2024 BOC Sciences. All rights reserved.