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1.
Environ Sci Technol ; 43(6): 2018-21, 2009 Mar 15.
Article in English | MEDLINE | ID: mdl-19368207

ABSTRACT

Supercritical CO2 extraction of aqueous streams is a convenient and effective method to remove commonly used solvents of varying polarities from aqueous waste streams. The resulting aqueous layers can potentially be sewered; whereas the organic layer can be recovered for potential reuse. Supercritical fluid extraction (SFE) is a technology that is increasingly being used in commercial processes (1). Supercritical fluids are well suited for extraction of a variety of media, including solids, natural products, and liquid products. Many supercritical fluids have low critical temperatures, allowing for extractions to be done at modestly low temperatures, thus avoiding any potential thermal decomposition of the solutes under study (2). Furthermore, the CO2 solvent strength is easily tuned by adjusting the density of the supercritical fluid (The density is proportional to the pressure of the extraction process). Since many supercritical fluids are gases at ambient temperature, the extract can be concentrated by simply venting the reaction mixture to a cyclone collection vessel, using appropriate safety protocols.


Subject(s)
Carbon Dioxide/chemistry , Chromatography, Supercritical Fluid/methods , Green Chemistry Technology/methods , Solvents/chemistry , Waste Disposal, Fluid/methods , Chromatography, Supercritical Fluid/instrumentation , Drug Industry , Industrial Waste , Organic Chemicals , Water Pollutants, Chemical/chemistry
2.
Proc Natl Acad Sci U S A ; 101(16): 5776-81, 2004 Apr 20.
Article in English | MEDLINE | ID: mdl-15079059

ABSTRACT

An efficient asymmetric synthesis of a selective estrogen receptor modulator (SERM) that has a dihydrobenzoxathiin core structure bearing two stereogenic centers is reported. The stereogenic centers were established by an unprecedented chiral sulfoxide-directed stereospecific reduction of an alpha,beta-unsaturated sulfoxide to the saturated sulfide in one step. Studies to elucidate the mechanism for this reduction are reported. Highly efficient Cu(I)-mediated ether formation was used to install the ether side chain, and selective debenzylation conditions were developed to remove the benzyl protecting groups on the phenols.


Subject(s)
Boranes/chemistry , Estrogen Receptor Modulators/chemical synthesis , Safrole/analogs & derivatives , Safrole/chemistry , Magnetic Resonance Spectroscopy , Mass Spectrometry , Oxidation-Reduction , Stereoisomerism
3.
J Org Chem ; 68(9): 3695-8, 2003 May 02.
Article in English | MEDLINE | ID: mdl-12713381

ABSTRACT

An improved and efficient bromination of 3,5-bis(trifluoromethyl)benzene was developed. A safe and reliable preparation of the potentially explosive 3,5-bis(trifluoromethyl)phenyl Grignard and 3-trifluoromethylphenyl Grignard reagents, from the precursor bromides, is described. Reaction System Screening Tool (RSST) and Differential Thermal Analysis (DTA) studies suggest these trifluoromethylphenyl Grignard reagents can detonate on loss of solvent contact or upon moderate heating. When prepared and handled according to the methods described herein, these Grignard reagents can be safely prepared and carried on to advanced intermediates.

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