
How HORIBA Raman microscopy solutions can support the polymer chemical and structural understanding

How HORIBA Raman microscopy solutions can support the polymer chemical and structural understanding

Pt Loading Mass Determination of PEMFC Catalyst Sheet Using a Benchtop EDXRF Analyzer

The polymer processing can impact FTIR-ATR spectra, and if these processing factors are not considered may lead to incomplete or inconsistent results.

HORIBA micro-XRF performs 2 applications for PEMFC catalyst research: Pt catalyst uniformity imaging and Pt catalyst loading mass determination on average.

2D materials such as graphene and transition metal dichalcogenides are well-suited to investigation by Raman and SEM. Examples of both are presented in the following.

Our GoldenEye is the only Snapshot hyperspectral imager covering from 400-1100nm.

WITec ParticleScout uses white-light microscopy and Raman spectroscopy to find, classify and identify microparticles over large sample areas.

Correlative Raman Microscopy for 2D Materials (New text= 2D materials such as graphene and transition metal dichalcogenides are well-suited to investigation by Raman and SEM. Examples of both are presented in this application note.)

Europe’s preeminent annual conference for Raman microscopy brings the international community together and offers a stage for presenting the field’s latest discoveries.

2D materials such as graphene and transition metal dichalcogenides are well-suited to investigation by Raman and SEM. Examples of both are presented in the following.

The Raman Rxn4 analyzer for LNG provides accurate measurement of the composition and calorific value of LNG, with 10 times lower uncertainty than GC-vaporizer system.

The European Gas Research Group has undertaken a project to evaluate Raman spectroscopy as an alternative to measure the composition of liquefied natural gas (LNG).

Our Breeze Spectrometer Family offers coverage ranges from 400-2500nm

PhaseTech's new Volt IR makes e-chem measurements easier because it works in transmission geometry. Plasmonic windows are the electrodes and enhance signals.

This paper explores the benefits of advanced UV spectroscopy for water quality management, including real-time monitoring and fast measurements.

This survey shows how Raman imaging can characterize food samples to help understand the products and production processes.

The capability of the VeeMAX III with ATR to maximize sensitivity by using the accessory’s variable angle feature and a low RI ATR material, ZnS, is investigated.

Graphene has rapidly emerged as a highly desirable quantum material in various application areas. Discover how to reveal graphenes structural and electonic properties.

Raman spectroscopy brings a non-destructive, multi-attribute, and process-ready measurement to chocolate manufacturing and quality assurance.

A polymer film was measured at Brewster’s angle to eliminate interference fringing in the IR spectrum. This technique is beneficial for the analysis of additives.

The advantages of single reaction chamber (SRC) microwave digestion are presented and exemplified by its application to sample preparation for food, advanced materials, mining and geochemistry, and consumer goods analyses.

This whitepaper describes applications of cryoRaman, a cryogenic Raman microscope offering VIS to NIR excitation, high magnetic fields, and full polarization control.

Ensuring consistent quality of dairy solids during processing has importance in consumer goods and nutritional supplements.

Learn how sub-micron resolution IR microscopy and high-speed spectroscopy overcomes the limitations of Raman spectroscopy for advanced failure analysis applications.

Learn how O-PTIR spectroscopy overcomes the limitations of Raman, providing automated measurement and chemID of sub-micron sized microplastics.

Learn how simultaneous O-PTIR and Raman provide high resolution IR imaging and spectroscopy of multilayer laminate film with minimal sample preparation.

Explains how O-PTIR spectroscopy overcomes the limitations of Raman spectroscopy by measuring defects in recessed semiconductor packaging structures.

Learn how sub-500nm resolution O-PTIR and co-located fluorescence microscopy combine to offer new insights and breakthroughs for life science research.

This application shows the depth profiling of mobile phone touch screens, facilitating visualization of the layered structure to illustrate technology advances.

Discover PerkinElmer's comprehensive and innovative solutions for the identification and quantification of microplastics.