Articles by BaySpec, Inc. - Spectroscopy
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Articles by BaySpec, Inc.

BaySpec, Inc.


Articles
Long-Wavelength Dispersive 1064nm Raman Counterfeit Detection of Rum, Shampoo, et. al.
March 29, 2013

Increased capability for identifying genuine versus counterfeit materials is achieved by using dispersive 1064nm Raman analyzers.

Non-Destructive Red Wine Measurement with Dispersive 1064 nm Raman Spectroscopy
February 1, 2013

Owing to technological improvements spurred on by the telecommunications boom of the last decade, Raman spectroscopy has become much more accessible to users in all application areas, including agricultural, forensic, pharmaceutical, biomedical, and others.

Transportable Dual-Band Raman System for Fuel Analysis
December 1, 2012

Transportable Dual-Band Raman System for Fuel Analysis

1064 nm Dispersive Raman Systems in Biofuel and Plant Research
September 27, 2012

Raman now works on highly fluorescent plant-based samples without sample preparation. 1064 nm dispersive Raman is a viable new option for users who are studying highly fluorescent samples such as plants and biofuels.

Tissue Raman Measurement at 1064 nm
September 1, 2012

Biological tissues and other materials often autofluoresce at near-infrared wavelengths, prohibiting Raman acquisition. New, dispersive Raman systems at 1064 nm allow fluorescence-free measurement in similar integration times.

Combined 1064 nm Raman and NIR Spectroscopy
July 26, 2012

A new compact instrument combining dispersive 1064 nm Raman and NIR spectroscopy has been developed to deliver maximized analytical flexibility and analytical power.

Long-Wave Dispersive 785 nm Raman: H2O2 Quantification
May 24, 2012

Qualitative and quantitative measurements of H2O2 concentration in unknown samples are observed with an error of ± 0.1% using long wavelength dispersive 785 nm bench-top raman instrument

Long-Wavelength Dispersive 1064 nm Raman Counterfeit Detection of Rum, Shampoo, et al.
March 29, 2012

Increased capability for identifying genuine versus counterfeit materials is achieved by using dispersive 1064 nm Raman analyzers.

Long-Wavelength Dispersive 1064 nm Raman: Counterfeit or Genuine Material Identification – Rum, Shampoo, et al.
February 1, 2012

Increased capability for identifying genuine versus counterfeit materials is achieved by using dispersive 1064 nm Raman analyzers.

Headlines from LCGC North America and Chromatography Online
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