Statement of Intent
In January 2026, Mr Michael Quigley AM, ANSTO Board Chair, shared ANSTO's Statement of Intent with the Minister for Industry and Innovation, and Minister for Science.
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In January 2026, Mr Michael Quigley AM, ANSTO Board Chair, shared ANSTO's Statement of Intent with the Minister for Industry and Innovation, and Minister for Science.
The nandin Deep Technology Incubator at ANSTO’s Lucas Heights innovation precinct has welcomed two new members.
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.
Research collaboration with University of Sydney focuses on a personalised approach to cancer treatment.
Two startups supported by the nandin Innovation Centre at ANSTO have hit the ground running in 2021 securing major opportunities from state governments to see their businesses thrive.
ANSTO recently re-started the OPAL Reactor after a six-month shutdown for essential maintenance and the installation of an upgraded facility.
Technology for enclosed spaces recently won global COVID19 NASA hackathon
Best and brightest recognised in 2017 research awards
ANSTO is proud to host the Shorebirds Competition for the fourth year. This unique environmental poster competition is free to enter and offers over $4000 in prizes (insert link to prizes button) for students and schools!
New class of conducting materials found for potential use in next generation fuel cells and other applications.
ANSTO has made progress on a more cost-effective way to produce the medical radioisotope molybdenum-99 (Mo-99), with less enrichment of uranium-235 (U-235) and produce less waste.
Young and mid-career ANSTO scientists and engineers have been featured in the latest issue of Careers with STEM that highlights careers in nuclear science.
Five exceptional female science communicators are part of a larger team who use skills in education and engagement to promote an interest in science amongst the public and students.
Doping with transition metals produced stability in bismuth oxide.
With enhanced submicron spatial resolution, speed and contrast, the Micro-Computed Tomography beamline opens a window on the micron-scale 3D structure of a wide range of samples relevant to many areas of science including life sciences, materials engineering, anthropology, palaeontology and geology. MCT will be able to undertake high-speed and high-throughput studies, as well as provide a range of phase-contrast imaging modalities.