Discovery Early Career Researcher Award - Grant ID: DE230100471
Funder
Australian Research Council
Funding Amount
$456,318.00
Summary
Designing advanced Zn-ion batteries towards practical applications. Aqueous Zn-ion batteries (ZIBs) are much safer and cheaper than current Li-ion batteries due to the water-based electrolyte and abundant Zn reserves. However, the state-of-the-art ZIB technique faces huge challenges for practical applications due to the low cathode capacity and poor Zn anode reversibility. This project aims to design novel cathodes with a new-type mechanism and highly reversible Zn anodes. Accordingly, on-demand ....Designing advanced Zn-ion batteries towards practical applications. Aqueous Zn-ion batteries (ZIBs) are much safer and cheaper than current Li-ion batteries due to the water-based electrolyte and abundant Zn reserves. However, the state-of-the-art ZIB technique faces huge challenges for practical applications due to the low cathode capacity and poor Zn anode reversibility. This project aims to design novel cathodes with a new-type mechanism and highly reversible Zn anodes. Accordingly, on-demand large-size ZIBs and flexible devices under industrial parameters will also be developed. The success of this project will place Australia at the forefront of implementing safe and low-cost batteries in largescale smart grid systems, household markets, and wearable medical devices.Read moreRead less
Discovery Early Career Researcher Award - Grant ID: DE170100572
Funder
Australian Research Council
Funding Amount
$360,000.00
Summary
Collaborative information seeking and its application in tourism. The project aims to better understand group behaviour of information seeking. Collaboration is an essential aspect of modern life; collaborative work, including tourism, encompasses obtaining and using information. However, most information behaviour models focus on the individual seeker of information, rather than on improving collaboration and team performance. The project builds models and develops guidelines for understanding ....Collaborative information seeking and its application in tourism. The project aims to better understand group behaviour of information seeking. Collaboration is an essential aspect of modern life; collaborative work, including tourism, encompasses obtaining and using information. However, most information behaviour models focus on the individual seeker of information, rather than on improving collaboration and team performance. The project builds models and develops guidelines for understanding and supporting collaborative information seeking behaviour in the context of tourism. Making it easier for tourists to find information is expected to benefit the Australian tourism industry.Read moreRead less
Discovery Early Career Researcher Award - Grant ID: DE180100107
Funder
Australian Research Council
Funding Amount
$414,325.00
Summary
Resilience, culture, and class: A sociological study of Australian students. This project aims to promote academic resilience and school success in contexts of adverse conditions. Using interviews, Social Network Analysis, and psychometric measures, the project will explore links between academic resilience, culture, and class. The project is designed to provide insights that can reduce educational failure and enhance life prospects of at-risk students. Expected outcomes include publicly availab ....Resilience, culture, and class: A sociological study of Australian students. This project aims to promote academic resilience and school success in contexts of adverse conditions. Using interviews, Social Network Analysis, and psychometric measures, the project will explore links between academic resilience, culture, and class. The project is designed to provide insights that can reduce educational failure and enhance life prospects of at-risk students. Expected outcomes include publicly available project findings and an instructional animation to assist end-users build academic resilience in Australia's multicultural contexts. Expected benefits include attenuated achievement gap, increased social cohesion and mobility, and reduced public cost on educational failure.Read moreRead less
Discovery Early Career Researcher Award - Grant ID: DE120102657
Funder
Australian Research Council
Funding Amount
$375,000.00
Summary
Group actions and K-theory: a new direction. This project investigates cutting-edge research in the mathematics of symmetries arising in nature. The aim is to significantly advance the frontiers of our knowledge by introducing new examples, original methods and a modern perspective.
Discovery Early Career Researcher Award - Grant ID: DE240100846
Funder
Australian Research Council
Funding Amount
$350,237.00
Summary
Probing Electrochemical Interface in CO2 reduction by Operando Computation. This project aims to explore the structure and dynamics of electrochemical interfaces using operando computational techniques, reveal the influence of catalyst structure and electrolyte environment on catalytic performance, and propose effective design strategies to facilitate the conversion of CO2 to high value-added fuels and chemicals. Innovations are expected in the new mechanism and rational design of electrocatalys ....Probing Electrochemical Interface in CO2 reduction by Operando Computation. This project aims to explore the structure and dynamics of electrochemical interfaces using operando computational techniques, reveal the influence of catalyst structure and electrolyte environment on catalytic performance, and propose effective design strategies to facilitate the conversion of CO2 to high value-added fuels and chemicals. Innovations are expected in the new mechanism and rational design of electrocatalysts. Expected outcomes include the discovery of new mechanisms at the electrochemical interface, the effect of local environmental changes on catalytic performance, and effective strategies for C2+ product. Benefits include a sustainable future for Australia with decreased CO2 emissions and increased green-fuel production.Read moreRead less
Discovery Early Career Researcher Award - Grant ID: DE150100328
Funder
Australian Research Council
Funding Amount
$374,000.00
Summary
Minimising transaction costs in Murray-Darling Basin water reform. Transaction costs provide social, economic, environmental and political barriers to the effectiveness of water reallocation policy in Australia. These costs are often difficult to quantify, but potentially are subject to measurement. This project aims to develop a comprehensive transaction cost framework for the Murray-Darling Basin that can be used to capture and measure transaction costs related to water policy. Further, the sc ....Minimising transaction costs in Murray-Darling Basin water reform. Transaction costs provide social, economic, environmental and political barriers to the effectiveness of water reallocation policy in Australia. These costs are often difficult to quantify, but potentially are subject to measurement. This project aims to develop a comprehensive transaction cost framework for the Murray-Darling Basin that can be used to capture and measure transaction costs related to water policy. Further, the scope of the cost measurement will involve a variety of data collection approaches. Outcomes include better water policy and management from arrangements that will span the divide between the Basin Plan and its implementation.Read moreRead less
Discovery Early Career Researcher Award - Grant ID: DE120100390
Funder
Australian Research Council
Funding Amount
$375,000.00
Summary
Characterisation of collagenous lectins and their roles in ovine infectious diseases. Specific proteins involved in immunity against infections will be studied in sheep to enhance their immune response against specific infections, such as ovine Johne's disease and footrot. This may lead to selective breeding of sheep that are more resistant to disease, minimising production losses and use of medications.
Discovery Early Career Researcher Award - Grant ID: DE240100625
Funder
Australian Research Council
Funding Amount
$446,700.00
Summary
Integrated slab-mode beam engineering for handheld terahertz systems. Current dominant system architectures for terahertz waves are adapted from other ranges, leading to critical bottlenecks. This project will address this with a new integration platform that is tailored to the particular needs of terahertz waves. This requires advances in the emerging field of micro-scale integrated optics, combined with antenna-theory principles, semiconductor science, and advanced microfabrication to incorpor ....Integrated slab-mode beam engineering for handheld terahertz systems. Current dominant system architectures for terahertz waves are adapted from other ranges, leading to critical bottlenecks. This project will address this with a new integration platform that is tailored to the particular needs of terahertz waves. This requires advances in the emerging field of micro-scale integrated optics, combined with antenna-theory principles, semiconductor science, and advanced microfabrication to incorporate active devices. Novel spatially-dependent dispersion engineering techniques will also be pioneered for phased-array-free beamforming. This will enable a broad variety of all-in-one handheld systems for practical applications of terahertz waves such as noninvasive standoff sensing and self-aligning wireless links.Read moreRead less
Discovery Early Career Researcher Award - Grant ID: DE220101365
Funder
Australian Research Council
Funding Amount
$433,082.00
Summary
Multiscale Design of Electrocatalysts for On-Demand H2O2 Production. The aim of this project is to design advanced single-atom catalysts at multiscale for efficient and selective electrocatalytic reduction of oxygen to hydrogen peroxides as clean chemicals and fuels. It is expected to generate new knowledge in materials science and electrochemistry, using interdisciplinary approaches of multiscale material engineering, in situ characterisation and theoretical calculations. Expected outcomes incl ....Multiscale Design of Electrocatalysts for On-Demand H2O2 Production. The aim of this project is to design advanced single-atom catalysts at multiscale for efficient and selective electrocatalytic reduction of oxygen to hydrogen peroxides as clean chemicals and fuels. It is expected to generate new knowledge in materials science and electrochemistry, using interdisciplinary approaches of multiscale material engineering, in situ characterisation and theoretical calculations. Expected outcomes include generalised design principles, innovative synthesis strategies, refined reaction mechanism understanding, and commercially relevant electrolysis technologies. Benefits include a sustainable future for Australia with advanced manufacturing, decreased emissions and resilient chemicals supply.Read moreRead less
Discovery Early Career Researcher Award - Grant ID: DE130101734
Funder
Australian Research Council
Funding Amount
$371,622.00
Summary
Should I stay or should I go? Increasing natural disaster preparedness and survival through animal attachment. This project will determine the extent to which people's willingness to risk their lives to save animals during natural disasters could be reinterpreted as a protective factor by motivating preparedness. This information will be used to create effective public health campaigns designed to increase natural disaster preparedness and save lives.