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1,000+ results for "Spectroscopy"

Rice deciphers optical spectra of carbon nanotubes

Researchers at Rice University have precisely identified the optical signatures of 33 'species' of light-emitting carbon nanotubes, revolutionizing the field of nanotechnology. This breakthrough enables chemists to measure nanotubes using simple and faster methods, accelerating research in this rapidly evolving field.

SourceRice University·JournalScience·DateNov 28, 2002

Chemists show proteins behave differently inside cells than they do in water solutions

Researchers at UNC Chapel Hill used nuclear magnetic resonance spectroscopy to study the effects of crowded environments on protein shape. They found that intrinsically unstructured proteins exhibit a definite folded-up shape when inside cells, unlike their apparent lack of structure in water solutions.

SourceUniversity of North Carolina at Chapel Hill·JournalProceedings of the National Academy of Sciences·DateSep 13, 2002

A step forward in nanotechnology

Researchers at the University of Michigan developed a new technique combining coherent nonlinear optical spectroscopy and near-field microscopy to detect quantum coherence in extended structures. This breakthrough enables sub-wavelength resolution, bringing nanotechnology closer to sophisticated devices.

SourceUniversity of Michigan·JournalScience·DateSep 21, 2001

Multidimensional technique enhances vibrational spectroscopy

Researchers at the University of Illinois have developed a multidimensional technique that enhances vibrational spectroscopy, allowing for unprecedented detail in studying molecular vibrations. This new method enables femtosecond-resolved snapshots of molecular motions, providing insights into the fundamental mechanics of molecules.

SourceUniversity of Illinois at Urbana-Champaign, News Bureau·JournalThe Journal of Physical Chemistry·DateAug 31, 2000

How Can You Tell Whether Corn Is Fungus-Ridden?

Researchers have developed a new technique to spot contaminated corn by listening for telltale noises made by mouldy kernels when exposed to infrared strobe light. The method uses Fourier Transform Infrared Photoacoustic Spectroscopy (FTIR-PAS) and achieves a 96% accuracy in spotting clean and contaminated corn.

SourceNew Scientist·JournalThe New Scientist·DateApr 14, 1999

New Fluorescence Technique For Ultra-Sensitive Enzyme Characterization Developed - Screening Catalytic Activity At The Single-Molecule Level

A new fluorescence technique has been developed for ultra-sensitive enzyme characterization at the single-molecule level. The technique, known as dual-color fluorescence cross-correlation spectroscopy, allows for precise and highly specific detection of molecules in large unspecific fluorescent backgrounds.

SourceMax-Planck-Gesellschaft·JournalProceedings of the National Academy of Sciences·DateMar 12, 1998