Significant progress on ultraflexible solar cells
A collaborative group including Monash has produced an ultra-thin and ultra-flexible organic solar cell for advanced wearable devices.
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A collaborative group including Monash has produced an ultra-thin and ultra-flexible organic solar cell for advanced wearable devices.
International research led by Curtin University and supported by ANSTO, has identified and studied the first sauropod dinosaur gut contents found anywhere in the world. The stomach content was preserved with a reasonably complete skeleton of the Australian Cretaceous species Diamantinasaurus matildae found in Winton Queensland.
The high-energy heavy-ion microprobe is used for the characterisation or modification of material properties at depths from approximately 1 micrometre to maximum depths of up to 500 micrometres from the material surface.
Online and interactive while in your home. Kids can zoom into these school holidays workshops and create movies, animations, arcade games, roller coasters and more. Limited spaces: book now.
International researchers have used nuclear techniques at ANSTO - a centre for food materials science - to develop a methodology that could assist in the design of oleogel systems for food applications.
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.
Understanding of the role that programmed cell death has in development.
Research can improve both food processing and food product development.
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Health researchers have developed a new method for producing PET radiotracers.
Research has demonstrated that internally generated neutrons could be used to effectively target micro-infiltrates and cancer cells outside of the defined treatment regions.
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.
ANSTO has agreed to participate in an Australian trial of a review of research infrastructure access proposals in which applicants remain anonymous to aid the removal of structural barriers to the career progression of Women in STEM.
Role at ANSTO
Role at ANSTO
Publications and resources from the Powder Diffraction beamline.