New round of IAEA Regional Cooperative Agreements projects announced
ANSTO is coordinating and facilitating a new cycle of Australian project proposals for the Regional Cooperative Agreement (RCA).
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ANSTO is coordinating and facilitating a new cycle of Australian project proposals for the Regional Cooperative Agreement (RCA).
Cosmogenic nuclides measurements at ANSTO to be part of large international Antarctic glacier research.
Hot Isostatic Pressing supports advanced manufacturing by increasing a material's density and reducing porosity. This capability complements ANSTO’s extensive suite of instruments and techniques for characterising materials and final products.
Scientists from UNSW and ANSTO have characterised the structure of two-dimensional transition metal carbides, carbonites, and nitrides (MXenes) materials, that could be used as a lightweight fire-retardant filler and in energy storage devices.
Two ANSTO environmental scientists are part of a large team led by the Australian National University (ANU), who have received an Australian Research Council Discovery Project grant to investigate how environmental change and human activities since industrialisation have impacted the transport and deposition of toxic metals on the south coast of Australia, Tasmania, and remote Southern Ocean islands.
Phenomenon predicted by Nobel Prize recipient
ANSTO environmental scientists contribute to investigation of carbon capture in wetlands.
The National Deuteration Facility is providing deuterated cholesterol, an essential ingredient in lipid nanoparticles for the delivery of vaccines using mRNA, to academic and industry partners.
Neutron association award to energy materials researcher Prof Vanessa Peterson.
ANSTO will be participating in a new Industrial Transformation Training Centre established and funded by the Australia Research Council to advance the use of bioactive ingredients in Australia.
Research demonstrates the existence of hexagonal planar geometry in a transition metal complex with great potential application across multiple disciplines.
Researchers developing new materials and devices that can withstand the harsh radiation environment in space are using the unique ANSTO’s capability to simulate the effects of high-energy ion irradiation on the properties and performance of these materials and devices.
Connect with the businesses and organisations seeking better understanding decommissioning oil and gas infrastructure and the potential impact of contaminants on marine life.
ANSTO research focuses on an advanced form of cancer treatment under consideration in Australia.
Role at ANSTO