Thermo Fisher Launched Nicolet RaptIR X Microscope

The new device integrates optical microscopy with infrared spectroscopy to streamline chemical analysis.

Updated on Sept. 28, 2026 in Chemistry

Close-up of a precision industrial microscope stage and optics in a clean laboratory setting, professional editorial photograph.
Thermo Fisher Scientific released the Nicolet RaptIR X, a new microscope designed to simplify microscopic chemical analysis for pharmaceutical and environmental research applications. AI Illustration. Upload story photo >

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Thermo Fisher Scientific has released the Nicolet RaptIR X FTIR Microscope. The tool aims to simplify microscopic chemical analysis for both experienced spectroscopists and new users.

Why it matters

By combining high-definition microscopy with Fourier Transform Infrared Spectroscopy, the device makes complex chemical identification more accessible and efficient for researchers. This advancement supports critical fields like pharmaceutical formulation and microplastics investigation.

The microscope utilizes OMNIC Paradigm Software to guide users through sample acquisition workflows. The technology leverages 50 years of development in FTIR spectroscopy to enhance current analytical methods.

The players

Thermo Fisher Scientific

This is a global supplier of scientific instrumentation, reagents, and software for research, production, and analysis.

The details

The device features a design that merges high-definition optical microscopy with spectroscopic capabilities. It is specifically engineered to improve the chemical analysis of microscopic samples through more intuitive user interfaces.

Timeline

  1. Thermo Fisher Scientific launched the Nicolet RaptIR X microscope on September 28, 2026.

The Big Picture

The introduction of this microscope updates the long-standing industrial application of Fourier Transform Infrared Spectroscopy. This development signals a shift toward more integrated, automated workflows in laboratory environments that were previously dependent on manual operation.

The increased accessibility of this microscopic analysis tool could accelerate the development of new pharmaceutical drugs and improve the detection of microplastic pollutants in environmental samples. These advancements may lead to faster testing timelines in high-stakes manufacturing and research facilities.

The takeaway

Advancements in laboratory software and hardware integration continue to lower the barrier for high-precision scientific analysis. Researchers should evaluate how automated, workflow-guided systems can replace manual processes in their own analytical labs.

Further reading

For more information on the latest innovations in chemical research, visit our Chemistry section.

Source note: This article includes information reported by Scientist Live.

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