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DXR3xi Imaging Micro-Raman

Unmatched imaging performance, easy operation that anyone can master.

The Thermo Scientific DXR3xi Imaging Micro-Raman achieves high-quality imaging at an unprecedented speed. With sophisticated software features and high spatial resolution, users can quickly obtain visual information. The advanced imaging capabilities, combining minimal sample preparation with intuitive software, enable rapid and powerful Raman spectroscopy performance. The DXR3xi Imaging Micro-Raman is designed for simplicity of operation, accommodating users of all levels. The refined software accelerates data visualization, and advanced particle analysis allows for the rapid identification and analysis of microscopic contaminants in samples. 3D confocal imaging provides non-destructive and non-invasive 3D imaging measurements, and the terrain mapping feature facilitates focused Raman imaging even on samples with surface irregularities. Unique automatic alignment and calibration, along with automatic background correction, ensure consistently accurate measurements.

We are currently publishing over 130 application notes related to FT-IR and Raman spectroscopy!

basic information

- Achieves high-speed imaging of extensive areas and high spatial resolution imaging of small areas. - High spatial resolution (below 0.5 μm in the plane direction). - Equipped with intuitive imaging dedicated software (Thermo Scientific OMNICxi). - Unique technology enables imaging integration of the same area. - Real-time multivariate analysis is possible during imaging acquisition. - Auto-alignment and calibration mechanism (patented technology) ensures the device is always in optimal condition. For more details, please refer to the catalog.

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Thermo Scientific

Applications/Examples of results

- Materials Science - Battery Research and Development - Nanotechnology - Formulation Research - Microplastic Analysis - Foreign Substance Analysis/Defect Analysis - Academia Research - Geology - etc.

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DXR3 Series Raman Spectrometer

PRODUCT

Example: Evaluation of crystal polymorphism of low-dose tablets using Raman imaging.

APPLICATION_NOTE

Example: Evaluation of active ingredients in hot melt extrusion formulations using Raman imaging.

APPLICATION_NOTE

Example: Identification and characterization of microplastics using imaging micro-Raman spectroscopy.

APPLICATION_NOTE

Example: Ex situ analysis of lithium-ion batteries using Raman imaging.

APPLICATION_NOTE

Example: In situ analysis of lithium-ion batteries using Raman imaging.

APPLICATION_NOTE

Example: Analysis of graphene produced by the CVD method using Raman imaging.

APPLICATION_NOTE

Example: Chemical information from subsurface structures using 3D Raman imaging and oil immersion objective lenses.

APPLICATION_NOTE

Example: Observation of molecular orientation in isotactic polypropylene film using polarized Raman spectroscopy.

APPLICATION_NOTE

Example: Analysis of recycled PET bottles using Raman spectroscopy.

APPLICATION_NOTE

Utilization of Spectroscopy in Battery Manufacturing - Specific Examples of FTIR, Raman, and Near-Infrared Analysis in the Manufacturing Workflow

TECHNICAL

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