Materials Products & Reviews
Materials analysis examines the properties, composition, and behavior of materials at a microscopic and macroscopic level. Using advanced techniques such as microscopy, spectroscopy, and chromatography, materials analysts investigate the structure, purity, and performance of various substances. From industrial materials and nanomaterials to battery testing and beyond, this field provides critical insights into the characteristics and applications of materials across industries such as manufacturing, electronics, and healthcare. Explore how materials analysis drives innovation, quality assurance, and product development for a wide range of applications.
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CamSpec M550 Spectrophotometer 1nm Bandpass
Spectronic-CamspecUV-Vis double beam scanning spectrophotometer with 1nm bandpass
CamSpec M550GMP Spectrophotometer
Spectronic-CamspecUV-Vis double beam scanning spectrophotometer with GMP compliancy
CamSpec M550V Spectrophotometer
Spectronic-CamspecUV-Vis double beam scanning spectrophotometer with variable bandpass.
Ocean HR2 UV-VIS Spectrometers
Ocean OpticsHigh resolution performance. Rapid acquisition speed. Great thermal stability.
IonicX Portable XRF Analyzer
Thermo Fisher ScientificThe Thermo Scientific™ portable IonicX™ XRF Analyzer provides accurate ionic salt raw material identity verification and high sample throughput to pharmaceutical and biopharmaceutical manufacturers. An innovative alternative to conventional bench-based analytical methods, IonicX delivers correct analysis of ionic salts at the point of use, in seconds, and with minimal sample preparation.
AIRsight
Shimadzu CorporationThe AIRsight Infrared/Raman Microscope is a unique microscope that combines both infrared and Raman spectroscopy into a single instrument, offering complementary molecular information. This system can be connected to Fourier Transform Infrared (FTIR) spectrophotometers including the IRTracer-100, the IRXross, and the IRAffinity-1series. The AIRsight significantly enhances analytical efficiency by streamlining all process…
Monolith X for Immobilization-Free Binding Affinity Measurements
NanoTemper TechnologiesMonolith X is a capillary-based system that enables you to measure the strength of molecular interactions in solution, without the need for immobilization. Minimal impact fluorescent labelling empowers you to measure Kds between a wide variety of targets and ligands using low amounts of sample. Enjoy approachable assay development with a fully guided process embedded in the default software.
Shodex OHpak SB-800 HQ series
Shodex HPLCShodexTM OHpakTM SB-800 HQ series is a size exclusion chromatography column used with aqueous solvents for analysis of high molecular weight samples.
Shodex PROTEIN KW400-4F
Shodex HPLCShodexTM PROTEIN KW400-4F series is a silica-based gel filtration chromatography column.
Shodex Asahipak NH2P series
Shodex HPLCShodex Asahipak NH2P series is a polymer-based chromatography column modified with amino group. The column is suitable for the analyses that require HILIC or ion exchange mode separations.
Shodex HILICpak VN-50 series
Shodex HPLCShodexä HILICpakä VN-50 series is a polymer-based HILIC column modified with diol group. The column is suitable for the analysis of hydrophilic compounds such as oligosaccharides and oligonucleic acids.
Shodex HILICpak VT-50 2D
Shodex HPLCShodex HILICpak VT-50 2D is a polymer-based HILIC column modified with quaternary ammonium group. The column is suitable for the analysis of anionic compounds such as phosphorylated saccharides and organic acids.
Shodex HILICpak VG-50 series
Shodex HPLCShodexä HILICpakä VG-50 series is a polymer-based HILIC column modified with amino group. The column is suitable for the analysis of saccharides and sugar alcohols.
Shodex SUGAR SP0810
Shodex HPLCShodex SUGAR SP0810 is a high-performance chromatography column which is specifically designed for the separations and analysis of sugars.
Shodex SUGAR SC1011
Shodex HPLCShodex SUGAR SC1011 is a high-performance chromatography column which is specifically designed for the separations and analysis of sugars.
Shodex SUGAR KS-800 series
Shodex HPLCShodex SUGAR KS-800 series is high performance chromatography columns which is specifically designed for separation and analysis of sugars.
BTC-130
H.E.L. GroupThe BTC-130 (Battery Testing Calorimeter) is a bench-scale adiabatic calorimeter designed to enable the testing of thermal, electrical, and mechanical stress tests on smaller-sized battery cells.
BTC-500
H.E.L. GroupThe BTC-500 (Battery Testing Calorimeter) is a floor-standing adiabatic calorimeter for the safe testing of thermal, electrical, and mechanical stress (abuse) tests on larger battery cells, and small modules.
iso-BTC
H.E.L. GroupThe iso-BTC (Battery Testing Calorimeter) is an isothermal calorimeter designed for the characterization of thermal behavior and electrical performance of battery cells under normal and extended use conditions. It supports a range of adaptors which allows a wide range of cell formats to be analyzed.
iso-BTC+
H.E.L. GroupThe new iso-BTC+ is designed for measuring heat-release profiles during battery charge and discharge testing, giving you enhanced performance and lifespan data. Building on established capabilities of the smaller iso-BTC, the new iso-BTC+ allows for testing of even higher power and physically larger batteries.
TSu
H.E.L. GroupThe fast screening of thermal and pressure hazards can be performed with the Thermal Screening Unit (TSu). It typically uses samples of 0.5 to 5g to generate both temperature and pressure data, and hence can be considered a better alternative to classical DSC/DTA methods.
Phi-TEC I
H.E.L. GroupThe Phi-TEC I is an adiabatic calorimeter that enables the characterization of thermal runaway hazards during process development and scale-up. The Phi-TEC I replicates industrial (large volume) conditions on a lab-scale, enabling thermal runaway hazards to be characterized safely and efficiently.
Phi-TEC II
H.E.L. GroupThe Phi-TEC II is an adiabatic calorimeter, which supports the use of low Phi-factor test cells. This allows for manufacturing plant conditions to be fully replicated on a lab-scale thus allowing thermal runaway risks to be simulated and assessed.