Raman
Sir Chandrasekhara Venkata Raman co-discoverer of the Raman effect in liquids.
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SERS (Surface Enhanced Raman Scattering) Substrate & SERS Reader – Mini Chemistry Analytic Pack
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The porous carbon SERS substrate provides not only high signal enhancement due to its strong broadband charge-transfer resonance for large chemical enhancement (as opposed to electromagnetic enhancement in traditional metal-based SERS substrates), but also extraordinarily high reproducibility or substrate-to-substrate, spot-to-spot, sample-to-sample, and time-to-time consistency in SERS spectrum (which is not possible with traditional metal-based SERS) due to the absence of "electromagnetic hot spots" by making the entire surface of the substrate "chemically hot", high durability due to no oxidization, and high compatibility to biomolecules due to its fluorescence quenching capability.
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Raman Spectrometers
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The extensive Raman spectrometer family from Anton Paar offers the right instrument for what you want to do: Identify unknown substances, verify samples in quality assurance, analyze the chemical composition of samples, or monitor their changes.
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Broad Area Laser Power Littrow Series
Cougar
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The TEC-200 External Cavity Diode Laser in Littrow configuration is designed for high output power up to 1500mW with moderate linewidth in the order of 10GHz. It is employed for Raman Spectroscopy. Please check our downloadable data sheets.
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UV Man Spectrometer
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UV Raman (with laser wavelengths below 400nm) can be used to probe specific sample properties, and benefit from experiment properties different from typical visible Raman measurements – for example, greatly increased Raman scattering efficiency, modified laser penetration within the sample, and resonance coupling to different chemical moeities. However, UV analyses come with a number of technical challenges, that require considered instrument design to allow UV Raman to be a truly useful tool for the researcher.
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Extensions for CathodoLuminescence, Photoluminescence & Raman Spectroscopy
Clue Series
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CLUE SERIES offers the unique capability to evolve with your requirements. Start with an affordable panchromatic CL detector to end up with a complete combination of all spectroscopic techniques, hyperspectral & panchromatic CL, Raman & photoluminescence. multiple UV, visible & NIR mono and multichannel detectors (CCD and PMT), vacuum technology (VUV), time-resolved fluorescence TCSPC (IBH fast electronics & detection components), Raman spectroscopy, photoluminescence, fast imaging with EMCCD and SWIFT, angular-resolved CL, high performance gratings…
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Hyperspectral Image Processing Software for THz Imaging Data
ImageLab
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ImageLab is a one-of-a-kind image processing tool developed by our partner EPINA for the analysis of data from various spectroscopic imaging techniques such as THz, optical, UV/VIS, IR, Raman, or mass spectrometry. Based on multivariate statistical methods it enables the user to analyze and classify acquired hyperspectral images, to merge them with maps of physical properties and to overlay them with conventional high-resolution color photos. Visualization of the image data and highlighting of analytical information round up the software package to an indispensable instrument for in-depth analysis of spectroscopic image data. ImageLab is now part of Menlo Systems’ imaging extension TERA Image. Ask us for possibilities to upgrade your THz imaging system with our unique software tool!
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Surface Analysis
Innova-IRIS
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This provides researchers a perfect combination of chemical or crystallographic information at high spatial and spectral resolution with the most advanced atomic force microscopy characterization. The Innova-IRIS can be integrated with your choice of a leading Raman system to provide the best opaque sample TERS investigations available today. However you tailor your system, your application will benefit from Bruker exclusive, high-contrast IRIS TERS probes and the best tip preservation and lowest drift, guaranteeing that alignment is preserved even over the optical integration times necessary to interrogate weak Raman scatterers.
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f/1.3 Modular Spectrometers
Raman
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Our f/1.3 modular spectrometers can be configured for fiber couple or free space. They use our proprietary volume phase holographic gratings paired with f/1.3 optics. This allows us to build a high-performance spectrometer in a small package. These spectrometers constantly outperform larger more expensive units. They have high throughput and are ideal for applications that demand fast integration times or for low light applications.
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Product
Spectrometer
Model 207
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The Model 207 offers the user the most throughput and fastest aperture in a long focal length monochromator. This is ideal for photoluminescence and Raman spectroscopy applications. It is also available in a vacuum compatible version. Used in air and with a selection of gratings, the spectral range of the 207 extends from 185 nanometersm to 20 microns or more. Under vacuum range is extended down to 105 nm (depends on the grating.) Multiple ports are available for mounting accessories or CCD detectors, etc. McPherson SNAP IN gratings allow the alignment-free use of many different gratings. Easily view a wider spectral range or obtain higher resolution! You can retrofit years later and not have to worry about alignment with the McPherson SNAP IN approach. Our dual grating turret also accepts these easy to exchange gratings.
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Raman Spectroscopy
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Raman is a spectroscopic technique that uses laser light to interact with molecular excitations and determine what a substance or element is composed of. It relies upon the inelastic scattering of photons which produces a weak signal, making the collection of information challenging particularly when the substance to be measured is at distance or can only be given short exposure times. Our Raman spectrometers are particularly effective at making Raman measurements due to their configuration which delivers a higher throughput/etendue than standard instruments.
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IndiRAM GEM Identification System
ndiRAMTM Portable Series
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IndiRAMTM Portable Series Raman Spectrometer system for Gemmological studies is a quick screening system of the samples with high throughput.
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Spectroscopy
Metrohm Instant Raman Analyzers
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Handheld spectrometer for quick and easy identification of unknown substances
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Image Analyzers
Morphologi Range
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Morphological imaging is fast becoming an essential technology in the laboratory toolkit for particle characterization. The Morphologi 4 is a fully automated static image analysis system which provides a complete detailed description of the morphological properties of particulate materials. The Morphologi 4-ID combines the same automated static image analysis with Raman spectroscopy in a single, integrated platform, providing component-specific morphological descriptions of chemical species within a blend.
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EMORAL LiDARESA Mobile Raman
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The EMORAL LIDAR observations at the PolWET site in Rzecin, Poland, on 10 June 2019. The scattering ratio (top), quasi-particle depolarization ratio (middle), and backscatter colour ratio (bottom) derived at 532 nm with 30 m spatial and 30 s temporal resolutions
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Operando Spectroscopy
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The operando cells, designed to interface with certain IR and Raman spectrometers, enable study of electrode surfaces during normal operation. Choose between the "fuel cell" and "solid electrode" configurations. These custom - designed tools can help your research lab understand how materials behave under operation.














