Advancements and Emerging Techniques in Mass Spectrometry: A
Mass spectrometry (MS) stands at the forefront of the analytical sciences, offering unparalleled sensitivity and precision for the identification and quantification of a wide array of
Researchers from the University of Cambridge and GlitterinTech, a startup founded by the same research group, have unveiled a fundamentally new type of optical spectrometer that delivers laboratory-grade precision in a device small enough to be embedded in por...
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Mass spectrometry (MS) stands at the forefront of the analytical sciences, offering unparalleled sensitivity and precision for the identification and quantification of a wide array of
A completely new type of microscopy based on quantum sensors Researchers combine magnetic resonance spectroscopy with fluorescence microscopy Date: February 25, 2025 Source: Technical
Mass spectrometry imaging has been performed by using a range of various ionization techniques coupled with different types of mass spectrometers. After decades of development, from
Modern spectroscopes generally use a diffraction grating, a movable slit, and some kind of photodetector, all automated and controlled by a computer.
The current state of imaging spectroscopy spans diverse applications including but not limited to air-borne and ground-based computer vision systems.
Therefore, developing a new type of miniaturized, low-cost, and integrated spectrometer is necessary and urgent. To miniaturize spectrometers, mechanical structures in traditional...
However, the smallest spectrometers on the market are still fairly bulky. “We''ve created a spectrometer that operates quickly, at low voltage, and that is sensitive to a wide spectrum of light,”
Researchers from the University of Cambridge and GlitterinTech, a startup founded by the same research group, have unveiled a fundamentally new type of optical spectrometer that delivers...
Recent advancements in miniaturization and computational capabilities have enabled the development of compact, portable, and cost-effective spectrometers, which offer the advantage of
Spectroscopy Uncover the latest and most impactful research in Spectroscopy. Explore pioneering discoveries, insightful ideas and new methods from leading researchers in the field.
The single-moderator neutron spectrometer is the result of developments in multisphere neutron spectrometer design. Multisphere is a multimoderator-based neutron spectrometer technique
Researchers from the University of Cambridge and GlitterinTech (a start-up founded by the same research group) have unveiled a fundamentally
Scientists can generate frequency combs using several types of lasers for different wavelengths. By using a laser that produces long wave infrared radiation, such as a quantum
Researchers have developed a prototype called MultiQ-IT that can process large numbers of molecules at the same time. The work provides a framework for building faster and more sensitive...
SpectroGen, a new AI tool, serves as a virtual spectrometer for assessing a new material''s quality, offering a faster and cheaper option for
Discover how spectroscopy works, its variations and applications in the lab and beyond, and how spectroscopic innovations are revolutionizing research.
Accelerate drug process development with the Xevo CDMS, a compact, easily operated benchtop charge detection mass spectrometer that can perform MS analysis of biomolecules in the
The proposed speckle spectrometer based on diffractive metasurfaces achieves a high spectral density which is promising to develop ultra-compact and high-performance spectrometers.
New advances and trends in mass spectrometry instrumentation and technology, part I: introduction, single-cell analysis, metabolomics, lipidomics, and multi-omics integration
A new prototype takes mass spectrometry from analyzing a few molecules at a time to handling billions at once.
Optical spectrometers (often simply called "spectrometers"), in particular, show the intensity of light as a function of wavelength or of frequency. The different wavelengths of light are separated by refraction in a prism or by diffraction by a diffraction grating. Ultraviolet–visible spectroscopy is an example. These spectrometers utilize the phenomenon of optical dispersion. The light from a s
Researchers have successfully demonstrated a spectrometer that is orders of magnitude smaller than current technologies and can accurately measure wavelengths of light from ultraviolet to
In this article, we take a look at the fundamentals of mass spectrometry, how it works, variations that can be used at each stage of the process and how they can be combined to suit
The review offers us new insights into the development trends of mass spectrometers from a perspective of mass analyzers. It provides guidance to the selection of suitable mass