Synthesis and isolation of methyl bismuth cysteine and its definitive identification by high resolution mass spectrometry
Abstract
After the synthesis and isolation of methylated bismuth cysteine, its initial identification by IR-spectroscopy was performed, whereas for definitive identification, high resolution mass spectrometry (ESI-TOF-MS and LTQ Orbitrap) was carried out.
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© 2009 Institute of Chemistry, Slovak Academy of Sciences
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Artikel in diesem Heft
- Utilization of solid phase spectrophotometry for the determination of trace amounts of copper using 5-(2-benzothiazolylazo)-8-hydroxyquinoline
- Analysis of spectinomycin in fermentation broth by reversed-phase chromatography
- An amperometric sensor for uric acid based on ordered mesoporous carbon-modified pyrolytic graphite electrode
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- Aquaculture by-product: a source of proteolytic enzymes for detergent additives
- Effect of anthraquinone on brightness value and crystalline structure of pulp during soda processes
- Selection of a method for determination of activity of pectinolytic enzymes in berry fruit materials
- Study on polymeric micelles of poly(γ-benzyl l-glutamate)-graft-poly(ethylene glycol) copolymer and its mixtures with poly(γ-benzyl l-glutamate) homopolymer in ethanol
- Synthesis and characterization of mesoporous molecular sieves
- Growth mechanism and characterization of ZnO nano-tubes synthesized using the hydrothermal-etching method
- Novel use of silicon nanocrystals and nanodiamonds in biology
- Fluoride anion sensing using colorimetric reagents containing binaphthyl moiety and urea binding site
- Spectrophotometric methods for sertraline hydrochloride and/or clidinium bromide determination in bulk and pharmaceutical preparations
- Study of physicochemical properties-antitubercular activity relationship of naphthalene-1,4-dione analogs: A QSAR approach
- Spectroscopic study of protonation of oligonucleotides containing adenine and cytosine
- Rheological properties of doughs with buckwheat and quinoa additives
- Synthesis and isolation of methyl bismuth cysteine and its definitive identification by high resolution mass spectrometry