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How to prepare samples for analysis on the Powder Diffraction beamline.
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How to prepare samples for analysis on the Powder Diffraction beamline.
The Infrared Microspectroscopy beamline combines the high brilliance and collimation of the synchrotron beam through a Bruker V80v Fourier Transform Infrared (FTIR) spectrometer and into a Hyperion 3000 IR microscope to reach high signal-to-noise ratios at diffraction limited spatial resolutions between 3-8 μm.
The BRIGHT Nanoprobe beamline provides a unique facility capable of spectroscopic and full-field imaging. NANO will undertake high-resolution elemental mapping and ptychographic coherent diffraction imaging. Elemental mapping and XANES studies (after DCM upgrade) will be possible at sub-100 nm resolution, with structural features able to be studied down to 15 nm using ptychography.
The Medium Energy- X-ray Absorption Spectroscopy beamlines provides access to XANES and EXAFS data from a bending magnet source, optimised for cutting-edge applications in biological, agricultural and environmental science in an energy range that is not currently available at the Australia Synchrotron.
ANSTO offers reliable and traceable calibration services for radiation survey meters, contamination monitors and electronic personal dosimeters.
Access to a ‘window into the cell’ with University of Wollongong cryogenic electron microscope at ANSTO.
The radiography program focuses on the development of Neutron Capture Enhanced Particle Therapy (NCEPT) from initial preclinical work, to clinical trials and finally commercial translation and licencing.
The Advanced Diffraction and Scattering beamlines (ADS-1 and ADS-2) are two independently operating, experimentally flexible beamlines that will use high-energy X-ray diffraction and imaging to characterise the structures of new materials and minerals.
Accurate ‘fingerprinting’ tool to verify source of origin is in development with collaborators from academia and industry.
The nature of Metal-Oxide-Semiconductor Field Effect Transistors (MOSFETs) present a fascinating paradox in space exploration. Their strength in radiation detection becomes their weakness in space operations, exposing an Achilles' heel for NASA. Yet, these same devices monitor radiation doses received by humans on earth and in space.
The Biological Small Angle X-ray Scattering beamline will be optimised for measuring small angle scattering of surfactants, nanoparticles, polymers, lipids, proteins and other biological macromolecules in solution. BioSAXS combines combine a state-of-the-art high-flux small angle scattering beamline with specialised in-line protein purification and preparation techniques for high-throughput protein analysis.
See details of previously published customer updates from our Health products team.
A tiny 8mm by 6mm radioactive capsule went missing in January 2023, somewhere along a 1400 kilometre journey from Rio Tinto’s Gudai-Darri iron ore mine to its final destination in Perth, Western Australia. Find out how ANSTO's CORIS360® technology identified the exact location of the missing source.
There have been significant developments in small modular reactor technologies in 2022. The International Atomic Energy Agency expects small modular reactors (SMRs) to make an important contribution to achieving global climate goals and energy supply security. But with more than 70 SMR designs under development in 18 countries – including innovative reactors that are yet to be licensed and novel methods of modular manufacturing that are new to the nuclear industry – widely deploying SMRs in time remains a tall task.
ANSTO is proud to host the Shorebirds Competition for the fifth year. This unique environmental poster competition is free to enter and offers over $4500 in prizes for students and schools!