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~95% (capillary GC)

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Linear Formula:
CAS Number:
Molecular Weight:
Beilstein/REAXYS Number:
EC Number:
MDL number:
PubChem Substance ID:


~95% (capillary GC)

refractive index

n20/D 1.346 (lit.)


121-122 °C (lit.)


1.547 g/mL at 25 °C

storage temp.


SMILES string




InChI key


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Reagent for introducing trifluoroacetyl group.

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N Pizarro et al.
Journal of pharmaceutical and biomedical analysis, 21(4), 739-747 (2000-03-04)
We developed a fast and sensitive method for identification and quantification of plasma concentrations of amphetamine using gas chromatography with mass spectrometry detection (GC-MS). Amphetamine-d8 served as internal standard. The method involves a single extraction procedure and an easy treatment
Caroline Raeppel et al.
Journal of chromatography. A, 1218(44), 8123-8129 (2011-10-04)
This work presents a new method to analyse simultaneously by GC-MS 31 pesticides from different chemical classes (2,4 D, 2,4 MCPA, alphacypermethrin, bifenthrin, bromoxynil, buprofezin, carbaryl, carbofuran, clopyralid, cyprodinil, deltamethrin dicamba, dichlobenil, dichlorprop, diflufenican, diuron, fenoxaprop, flazasulfuron, fluroxypyr, ioxynil, isoxaben
Kathleen A Vermeersch et al.
PloS one, 10(2), e0118262-e0118262 (2015-02-18)
Recently, multicellular spheroids were isolated from a well-established epithelial ovarian cancer cell line, OVCAR-3, and were propagated in vitro. These spheroid-derived cells displayed numerous hallmarks of cancer stem cells, which are chemo- and radioresistant cells thought to be a significant
Devin H Currie et al.
BMC systems biology, 9, 30-30 (2015-06-27)
Thermoanaerobacterium saccharolyticum is a hemicellulose-degrading thermophilic anaerobe that was previously engineered to produce ethanol at high yield. A major project was undertaken to develop this organism into an industrial biocatalyst, but the lack of genome information and resources were recognized
Thomas B Kakule et al.
Journal of the American Chemical Society, 136(51), 17882-17890 (2014-12-02)
The programming of the fungal polyketide synthase (PKS) is quite complex, with a simple domain architecture leading to elaborate products. An additional level of complexity has been found within PKS-based pathways where the PKS is fused to a single module

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