Thermo Fisher Scientific Introduces the Thermo Scientific™ EMPAD™ G2 Electron Detector to Advance Materials Research

Thermo Fisher Scientific Inc., the world leader in serving science, today introduced the Thermo Scientific™ EMPAD™ G2 detector, a new detector designed to help researchers see and understand materials in unprecedented detail.

The Thermo Scientific™ EMPAD™ G2 detector is pictured with an electron diffraction pattern, illustrating the rich data captured through 4D STEM. Image Credit: Cornell University

EMPAD G2 enables high-speed four-dimensional scanning transmission electron microscopy (4D STEM), an advanced form of electron microscopy that captures far more information about a material than a standard image, helping researchers better understand its structure and properties.

The EMPAD G2 gives scientists a deeper view of materials and the information they need to explore what those materials can do. By making advanced 4D STEM faster, more reliable and easier to use, we can help researchers accelerate discoveries in areas such as semiconductors, energy and advanced materials - and ultimately enable new technologies that can improve our everyday lives.”

Glyn Davies, president, materials and structural analysis, Thermo Fisher Scientific

Capturing weaker signals alongside stronger ones can help researchers measure characteristics, including a material’s structure, chemistry, strain and electric and magnetic properties in a single experiment. EMPAD G2 supports advanced applications, ranging from strain mapping and differential phase contrast (DPC) to multi-slice electron ptychography for three-dimensional characterization at the atomic scale.

As 4D STEM becomes more widely used in academic and industrial research, detector performance is increasingly important. Researchers need to capture large amounts of information quickly while accurately measuring signals that can range from extremely strong to extremely weak. EMPAD G2 is designed specifically to meet these demands and help researchers get reliable quantitative information from a single acquisition.

According to David Muller, Ph.D., Samuel B. Eckert Professor of Engineering at the School of Applied and Engineering Physics at Cornell University, this new technology represents an important milestone for scanning transmission electron microscopy. “The EMPAD G2 project gave us a unique opportunity to design a detector specifically optimized for STEM, rather than TEM or x-ray imaging,” said Muller.

EMPAD G2 is also fully integrated with the user-friendly Thermo Scientific Velox software. Researchers can collect and analyze multiple types of data, including simultaneous 4D STEM and energy-dispersive x-ray spectroscopy (EDS) within a single workflow. This integration helps simplify advanced materials analysis and supports more reliable, repeatable results.

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