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Quattro E SEM

Thermo Fisher ScientificAvailable: Worldwide

Ultra-versatile high-resolution SEM with unique environmental capability

Thermo Fisher Scientific

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Average Rating 4.5

|2Scientists have reviewed this product

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Essential equipment for the characterization of the different families of materials.

 

Average Rating 4.3

Application Area:

Materials science: Powders, thin films, clays

Easy to use, the Quattro ESEM is a high-resolution SEM with unique environmental capability. We achieve high quality and reproducibles results.The after sales care is very satisfying with a correct value for money.

Review Date: 16 Jul 2021 | Thermo Fisher Scientific

Good system. Multi user facility is a must.

 

Average Rating 4.7

Application Area:

Multi-use facility

This ESEM is easy for use the multi-user facility. I don't like the removable back scattered detector, all others are good.

Review Date: 12 Feb 2020 | Thermo Fisher Scientific

The Thermo Scientific™ Quattro ESEM combines all-around performance in imaging and analytics with a unique environmental mode (ESEM™) that allows samples to be studied in their natural state. It is ideal for a wide variety of academic, industrial, and government labs that want the versatility and ease-of-use needed for multiple users of different experience levels and disciplines on a platform that also supports unique in situ experiments. Quattro’s field emission gun (FEG) ensures excellent resolution, while its three vacuum modes (high vacuum, low vacuum, and ESEM) provide the flexibility to accommodate the widest range of samples of any SEM available, including samples that are outgassing or otherwise not vacuum-compatible.

Quattro ESEM applications include:

Nanocharacterization

  • Metals and alloys, fractures, welds, polished sections, magnetic and superconducting materials
  • Ceramics, composites, plastics
  • Films/coatings
  • Geological sections, minerals
  • Soft materials: polymers, pharmaceuticals, filters, gels, tissues, plant material
  • Particles, porous materials, fibers

Characterization in situ

  • Crystallization/phase transformation
  • Oxidation, catalysis
  • Material growth
  • Hydration/dehydration/wetting/contact angle analysis
  • Tensile (with heating or cooling)

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