Young People, Technology, and Wellbeing Research Facility. Large numbers of initiatives now mobilise technology to support the wellbeing of young Australians. However, amongst communities undertaking this work, there is currently significant duplication and insufficient sharing of research and best practice models. A Research Facility that consolidates existing research, and guides new research and initiatives will improve service delivery to young Australians by: reducing duplication between or ....Young People, Technology, and Wellbeing Research Facility. Large numbers of initiatives now mobilise technology to support the wellbeing of young Australians. However, amongst communities undertaking this work, there is currently significant duplication and insufficient sharing of research and best practice models. A Research Facility that consolidates existing research, and guides new research and initiatives will improve service delivery to young Australians by: reducing duplication between organizations working with young people; providing an accessible interface with research that can help address the community’s concerns about the role of technology in young people’s lives, and inform future policy and programs; and model effective cross-sector knowledge brokering to Australian industry. Read moreRead less
Thermoelectric devices for high-performing localised coolers. This project aims to develop a lightweight, low-energy-consumption, and high-durability wearable thermoelectric cooler for localised cooling using a novel industry-led approach, coupled with device design and materials engineering strategies. The key breakthrough expected is to design wearable thermoelectric coolers by using flexible substrates and thermoelectric materials with engineered chemistry and unique structures for achieving ....Thermoelectric devices for high-performing localised coolers. This project aims to develop a lightweight, low-energy-consumption, and high-durability wearable thermoelectric cooler for localised cooling using a novel industry-led approach, coupled with device design and materials engineering strategies. The key breakthrough expected is to design wearable thermoelectric coolers by using flexible substrates and thermoelectric materials with engineered chemistry and unique structures for achieving localised, instant, and controllable cooling with super low power input for personal usage in building and mining industry. Expected outcomes include innovative technologies for achieving high-efficiency cooling, which will provide significant economic and commercial benefits for Australia.Read moreRead less
Archiving Australian Media Arts: Towards a method and national collection. The early years of Australian digital media arts heritage are at risk. Australians were significant contributors to the development of media arts internationally, as well as making and exhibiting work nationally, yet only a tiny portion of the digital artwork by Australian artists has made it into institutional collections. Deteriorating disks and reliance on obsolete hardware and software mean that innovative digital pre ....Archiving Australian Media Arts: Towards a method and national collection. The early years of Australian digital media arts heritage are at risk. Australians were significant contributors to the development of media arts internationally, as well as making and exhibiting work nationally, yet only a tiny portion of the digital artwork by Australian artists has made it into institutional collections. Deteriorating disks and reliance on obsolete hardware and software mean that innovative digital preservation and access solutions are needed if these artworks are to be saved. Working with key cultural institutions, this project will conserve key media art case studies from the archives of media arts organisations, and develop a best practice method for the preservation of our digital media arts heritage.Read moreRead less
New high energy density cathode materials for lithium ion batteries. This project aims to develop new high-energy-density and low-cost lithium-rich cathode materials for advanced lithium-ion batteries that can store solar energy for Australian households and power the next generation electric vehicles. The project will design innovative strategies to suppress the voltage decay and capacity decline of the lithium rich materials over long-term cycling. The project expects to significantly improve ....New high energy density cathode materials for lithium ion batteries. This project aims to develop new high-energy-density and low-cost lithium-rich cathode materials for advanced lithium-ion batteries that can store solar energy for Australian households and power the next generation electric vehicles. The project will design innovative strategies to suppress the voltage decay and capacity decline of the lithium rich materials over long-term cycling. The project expects to significantly improve battery performance at a lower price and make a substantial impact to the energy supply technologies and industries in Australia and benefit the environment in the long run.Read moreRead less
Discovering a ‘good read’: Pathways to reading for Australian teens. This project aims to support the school, library, and book industries to increase teenagers’ recreational reading. Matching the right book to the right reader is essential to increase young people’s motivation to read. Yet how cultural intermediaries should operate to best effect within the complex ecologies that shape young people’s text selection is unclear. The project expects to generate robust evidence on how teens discove ....Discovering a ‘good read’: Pathways to reading for Australian teens. This project aims to support the school, library, and book industries to increase teenagers’ recreational reading. Matching the right book to the right reader is essential to increase young people’s motivation to read. Yet how cultural intermediaries should operate to best effect within the complex ecologies that shape young people’s text selection is unclear. The project expects to generate robust evidence on how teens discover books and the cultural factors that influence their choices. Expected outcomes include strategies that libraries, schools, and the book industry can use to promote Australian content for young adults, and equip young people to participate more fully in the social and economic benefits of pleasure reading.Read moreRead less
Talking Country: Sharing Indigenous stories of place through mobile media. This project aims to investigate how media technologies can facilitate cross-cultural engagement between Indigenous and non-Indigenous people. There is a need to break down the barriers that limit cross-cultural engagement with heritage issues. Mobile media environments provide ways to build this engagement through place-based incentives. The project expects to develop a new model for practice-based research, two mobile a ....Talking Country: Sharing Indigenous stories of place through mobile media. This project aims to investigate how media technologies can facilitate cross-cultural engagement between Indigenous and non-Indigenous people. There is a need to break down the barriers that limit cross-cultural engagement with heritage issues. Mobile media environments provide ways to build this engagement through place-based incentives. The project expects to develop a new model for practice-based research, two mobile apps, two digital archives and a toolkit to guide people on driving, cycling and walking tours to Indigenous places of significance. This will offer valuable avenues to share knowledge on the importance of those sites, build cultural awareness and position Indigenous knowledges at the heart of place-based engagements.Read moreRead less
Improving academic outcomes by moderating anxiety in children with autism. The project aims to investigate links between anxiety and academic enablers for children with autism. As a group, these children are currently achieving at lower rates than their peers, with implications for their future social and economic wellbeing. Effective interventions to improve educational outcomes are lacking. This project will investigate how anxiety, a commonly occurring condition in autism, impacts attitudes a ....Improving academic outcomes by moderating anxiety in children with autism. The project aims to investigate links between anxiety and academic enablers for children with autism. As a group, these children are currently achieving at lower rates than their peers, with implications for their future social and economic wellbeing. Effective interventions to improve educational outcomes are lacking. This project will investigate how anxiety, a commonly occurring condition in autism, impacts attitudes and behaviours that facilitate students’ participation in and ability to benefit from academic instruction in the classroom. Findings are intended to provide an evidence base for the development of an intervention suitable for use by service providers to increase academic achievement in children with autism.Read moreRead less
Sustainable Hydrogen Production from Used Water. The project aims to address the pressing challenge of water scarcity in hydrogen production by developing an innovative approach of using used water as the feed for water electrolysis. The project will result in an in-depth understanding of the impacts of water impurities in used water on the performance and durability of water electrolysers, and develop guidelines for the design of highly durable water electrolysers and the operation and upgrade ....Sustainable Hydrogen Production from Used Water. The project aims to address the pressing challenge of water scarcity in hydrogen production by developing an innovative approach of using used water as the feed for water electrolysis. The project will result in an in-depth understanding of the impacts of water impurities in used water on the performance and durability of water electrolysers, and develop guidelines for the design of highly durable water electrolysers and the operation and upgrade of existing wastewater treatment plants. The project will advance the practical applications of water electrolysis for scalable and sustainable hydrogen production and help Australia secure a leading position in the global emerging hydrogen economy.Read moreRead less
Pore Engineering of Chromatography Membranes for Bioseparation. Protein separation and purification is an essential unit operation in manufacturing processes of therapeutic proteins. The project aims to advance the practical applications of chromatography membrane, an emerging technology for protein separation and purification, by tailoring membrane pore geometry and surface functionality to achieve enhanced separation performance. The project expects to generate advanced knowledge and technique ....Pore Engineering of Chromatography Membranes for Bioseparation. Protein separation and purification is an essential unit operation in manufacturing processes of therapeutic proteins. The project aims to advance the practical applications of chromatography membrane, an emerging technology for protein separation and purification, by tailoring membrane pore geometry and surface functionality to achieve enhanced separation performance. The project expects to generate advanced knowledge and techniques in the fields of reactive polymer synthesis, functional membrane fabrication and application in bioseparation. The innovative membranes developed in the project are able to improve the production capacity of therapeutic protein manufacturing processes, providing significant economic benefits to Australia.Read moreRead less
Functional topological materials for superior thermoelectric applications. The efficient generation of electricity from waste heat remains a significant technological challenge, hampered by the absence of efficient materials for conversion. This project aims to develop functionalized topological materials with ultra-high thermoelectric and photothermal performance for harvesting heat into electricity. A recent breakthrough in device efficiency will be a game-changer and position Australian acade ....Functional topological materials for superior thermoelectric applications. The efficient generation of electricity from waste heat remains a significant technological challenge, hampered by the absence of efficient materials for conversion. This project aims to develop functionalized topological materials with ultra-high thermoelectric and photothermal performance for harvesting heat into electricity. A recent breakthrough in device efficiency will be a game-changer and position Australian academics and industries at the forefront of next generation of renewable power generation and refrigeration products. The outcomes will provide an advantage to end-users and industry, and will open a new market for advanced thermoelectric devices in multidisciplinary fields, communities and emerging industries.Read moreRead less