ELECTRON MICROSCOPY APPLICATIONS

Materials science

Materials Science is a field of research dedicated to the discovery and development of new materials and methods for their study. It is a multidisciplinary science that involves different areas of knowledge such as physics, chemistry and engineering. Materials Science focuses on the study of the most important characteristics of materials, such as their mechanical, chemical, electrical, thermal, optical and magnetic properties.

This field can be subdivided into different disciplines that include nanomaterials, organic materials, electronic/photonic materials, structural/composite materials, and smart materials.

Steels and metallic alloys

High resolution and great depth of focus are the main characteristics that make the Scanning Electron Microscope (SEM) a great tool for observing the topographic characteristics of samples composed of steel and metallic alloys.

Ag crystals by electrolysis

Ceramics and hard coatings

Non-conductive samples without protective coatings can be observed in variable pressure mode without causing damage to the sample. The use of components made from ceramic materials is, in some cases, the only solution to technical problems that cannot be solved using conventional materials.

Trimming Tool – Edge Covers

Glass

SEM TESCAN are of great benefit to the glass industry. Glass and its derived products are an important part of the automotive, construction, engineering and energy sectors, among others.

Defect on the glass surface

Polymers and compounds

High resolution and great depth of focus are characteristics that make SEM TESCAN excellent instruments for observing polymers, plastics and other composite materials.

Gel

Construction materials and civil engineering

Scanning Electron Microscopy has been an essential analytical technique for studying a variety of construction materials.

Ettringit in cement

Wood, Textile and Paper

High resolution and great depth of focus are capabilities that make TESCAN SEM instruments ideal for observing the topography of non-conductive materials such as wood, textiles and paper.

Wood

TESCAN equipment for MATERIALS SCIENCE

TESCAN VEGA 4

Analytical SEM for routine materials characterization, research, and micrometer-scale quality control applications.

TESCAN MIRA 4

High-resolution analytical SEM for routine materials characterization, research, and quality control applications at submicron scale.

TESCAN CLARA 2

Versatile UHR cryo-SEM for characterizing your biological and other beam-sensitive samples.

TESCAN MAGNA

Advanced UHR SEM and STEM imaging for characterization of your biological and beam-sensitive samples.

TESCAN AMBER 2

Versatile nanoanalytical FIB-SEM to expand your materials research capabilities.

TESCAN SOLARIS

Advanced  nanofabrication  bench  for  your  research  industrial laboratory.

TESCAN AMBER 2X

A unique combination of Fieldless Plasma FIB and UHR FE-SEM for multi-scale materials characterization.

TESCAN UNITOM

A multiresolution micro-CT optimized for high throughput, diverse sample types and flexibility for your research.

TESCAN RAMAN SEM

TESCAN RISE combines focal Raman microscopy with SEM microscopy (RISE) in an integrated microscope system.

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