Zobrazeno 1 - 7
of 7
pro vyhledávání: '"Jeffrey B. Oleske"'
Autor:
Michael R. Matrona, Jeffrey B. Oleske, Bradley R. Arnold, Christopher E. Cooper, Darren K. Emge
Publikováno v:
Canadian Journal of Chemistry. 96:614-620
UV Raman spectra were measured using a novel experimental configuration. This configuration allows many of the difficulties associated with UV excitation and high-power pulsed laser sources to be mitigated. Large sample areas are imaged into the dete
Publikováno v:
Next-Generation Spectroscopic Technologies XII.
Foreign and homegrown terrorism, illegal drug manufacture and environmental contamination, have lead to an increased need for rapid, portable and standoff chemical threat (explosives, narcotics, toxic industrial chemicals, etc.) detection technology.
Publikováno v:
Journal of visualized experiments : JoVE. (146)
Single-molecule imaging has greatly advanced our understanding of molecular mechanisms in biological studies. However, it has been challenging to obtain large field-of-view, high-contrast images in thick cells and tissues. Here, we introduce highly i
Publikováno v:
Photonic Instrumentation Engineering VI.
Autor:
Jeffrey B. Oleske, Justin T. Cooper
Publikováno v:
Integrated Optics: Devices, Materials, and Technologies XXII.
Resolving spectrally adjacent peaks is important for techniques, such as tracking small shifts in Raman or fluorescence spectra, quantifying pharmaceutical polymorph ratios, or molecular orientation studies. Thus, suitable spectral resolution is a vi
Publikováno v:
Applied Spectroscopy. 69:1397-1402
The vibrational bands of erythritol tetranitrate (ETN) were measured experimentally with both Raman spectroscopy and attenuated total reflectance Fourier transform infrared (ATR FT-IR) spectroscopy. Seventy-two (3N-6) vibrational modes were predicted
Publikováno v:
Analytical and bioanalytical chemistry. 395(2)
A method of standoff detection based on the observation of laser-induced fluorescence–amplified spontaneous emission (LIF-ASE) is described. LIF-ASE generates uniaxial intensity distributions of the observed fluorescence with the majority of intens