ADding Negative PRESSure To Improve HealING (the DRESSING Trial)
Funder
National Health and Medical Research Council
Funding Amount
$2,380,446.00
Summary
The aim of this 5-year randomised comtrolled trial is to test the clinical and cost effectiveness of vacuum dressings in reducing the incidence of surgical site infection in obese women undergoing elective and semi-urgent caesarian section. The trial will be conducted at 4 hospitals in south east Queensland. 2,100 women undergoing caesarian section will either receive a vacuum or standard surgical dressing and will be followed for 1 month after surgery.
Improving Nurse-administered Sedation Practice In The Cardiac Catheterisation Laboratory
Funder
National Health and Medical Research Council
Funding Amount
$320,891.00
Summary
This research will provide evidence to inform nursing management of the potentially life-threatening complications that are associated with the administration of sedation in the cardiac catheterisation laboratory. Three studies will be conducted: an investigation of the prevalence and risk factors of hypothermia after sedation; a randomised controlled trial of active warming to prevent hypothermia; and a study to determine whether audit and feedback improves patient safety during sedation.
Intervalence Transfer in Dinuclear and Oligonuclear Polymetallic Assemblies. Mixed-valence compounds (such as the pigment Prussian Blue) have been known for over two centuries, and possess important conductivity, magnetic and spectral properties. Electron transfer between the elements of different valency (intervalence charge transfer, IVCT) gives rise to absorbances in the red or near-infrared region of the spectrum which provide fundamental information on the electron migration. By design of ....Intervalence Transfer in Dinuclear and Oligonuclear Polymetallic Assemblies. Mixed-valence compounds (such as the pigment Prussian Blue) have been known for over two centuries, and possess important conductivity, magnetic and spectral properties. Electron transfer between the elements of different valency (intervalence charge transfer, IVCT) gives rise to absorbances in the red or near-infrared region of the spectrum which provide fundamental information on the electron migration. By design of target di- and higher nuclearity polymetallic species, the project will study IVCT phenomena to understand electron movement, allowing rational development of applicable materials such as catalysts, light-activated devices and non-linear optical materials.Read moreRead less
Discovery Early Career Researcher Award - Grant ID: DE170101403
Funder
Australian Research Council
Funding Amount
$360,000.00
Summary
Alloy catalyst design for synthesis of graphene and boron nitride sheets. This project aims to use computational methods to determine the optimal catalyst for growth of high quality, continuous films, a crucial scientific problem in the synthesis of two dimensional materials. It will use first-principles calculations to explore the growth of graphene and hexagonal boron nitride on several designed alloy catalysts and develop a physical model to understand the mechanism of the chemical vapour dep ....Alloy catalyst design for synthesis of graphene and boron nitride sheets. This project aims to use computational methods to determine the optimal catalyst for growth of high quality, continuous films, a crucial scientific problem in the synthesis of two dimensional materials. It will use first-principles calculations to explore the growth of graphene and hexagonal boron nitride on several designed alloy catalysts and develop a physical model to understand the mechanism of the chemical vapour deposition growth of the materials. The alloy catalyst design is expected to lead to experimental routes to synthesise high-quality and large-area graphene and hexagonal boron nitride films and accelerate the industrial application of two-dimensional nanomaterials. This will promote their application in catalysis, sensors, electronics, energy storage and increase Australia’s competitive advantage in synthesis of high-performance materials.Read moreRead less
Computer-Aided Design of High-Performance Photocatalysts for Solar Hydrogen Production Based on Red Titanium Dioxide. Large-scale generation of energy by solar conversion is critical for future sustainability. This project aims to develop high performance materials to efficiently convert solar energy to hydrogen - a clean fuel. Starting from the newly developed material red titanium dioxide, novel strategies for improved photocatalytic materials will be proposed and evaluated by advanced computa ....Computer-Aided Design of High-Performance Photocatalysts for Solar Hydrogen Production Based on Red Titanium Dioxide. Large-scale generation of energy by solar conversion is critical for future sustainability. This project aims to develop high performance materials to efficiently convert solar energy to hydrogen - a clean fuel. Starting from the newly developed material red titanium dioxide, novel strategies for improved photocatalytic materials will be proposed and evaluated by advanced computational approaches. Key issues for solar-to-hydrogen conversion will be clarified. The materials, knowledge and strategies achieved by this project will dramatically enhance current solar technology and in particular will advance the development of low-cost hydrogen production from water. Read moreRead less
Chlorine Evolution Catalysts for Efferent Seawater Electrolysis. Seawater is the most abundant aqueous resource on earth that is readily accessible at very low costs, but yet to be directly utilised for production of hydrogen fuel and commodity chemicals. This project aims to develop cheap and plentiful carbon-based high performance chlorine evolution electrocatalysts for seawater electrolysis powered by renewable electricity to realise the production of hydrogen, chlorine and sodium hydroxide d ....Chlorine Evolution Catalysts for Efferent Seawater Electrolysis. Seawater is the most abundant aqueous resource on earth that is readily accessible at very low costs, but yet to be directly utilised for production of hydrogen fuel and commodity chemicals. This project aims to develop cheap and plentiful carbon-based high performance chlorine evolution electrocatalysts for seawater electrolysis powered by renewable electricity to realise the production of hydrogen, chlorine and sodium hydroxide directly from seawater. The electrolyser can also be used to treat desalination brine while produce hydrogen and chemicals. The success of the project will set a firm technological foundation for seawater utilisation, which will add to Australian capability to meet future energy and environment challenges.Read moreRead less
A Prospective Study Of Traumatic Stress In Children Involved In Motor Vehicle Accidents
Funder
National Health and Medical Research Council
Funding Amount
$185,889.00
Summary
Motor vehicle accidents (MVAs) are relatively frequent major life trauma that represent significant life threatening experiences. Not surprisingly evidence suggests that MVAs represent a frequent trigger for the development of post traumatic stress disorder (PTSD), although studies have typically focussed upon adult survivors. Local statistics indicate a significant proportion of children will experience a MVA of sufficient severity to warrant attendance at hospital. This project is of significa ....Motor vehicle accidents (MVAs) are relatively frequent major life trauma that represent significant life threatening experiences. Not surprisingly evidence suggests that MVAs represent a frequent trigger for the development of post traumatic stress disorder (PTSD), although studies have typically focussed upon adult survivors. Local statistics indicate a significant proportion of children will experience a MVA of sufficient severity to warrant attendance at hospital. This project is of significance because it will provide badly needed information about the prevalence and course of emotional and behavioural problems in children following exposure to a serious MVA. More broadly the study should provide valuable information on post-traumatic stress responses in children. Furthermore, it will enable us to identify the factors that place children at particular risk of developing psychological problems following a MVA. This will provide information to help design of interventions to prevent the development of PTSD and other forms of psychopathology following MVAs. Such data will also permit identification of those children who are at particular risk of psychological morbidity after MVA trauma and for whom preventive interventions are most likely to be beneficial.Read moreRead less
Plasmonic nanoparticle catalysis for nitrogen-based synthesis. Light can generate an optical force to capture small objects. This requires intense light – a laser, which limits optical trapping in catalysis applications. This project aims to apply plasmonic nanoparticles with normal-intensity light to take advantage of plasmonic-generated optical forces for catalytic chemical synthesis. The optical trapping/releasing of small molecules is highly selective and responsive to molecule structure and ....Plasmonic nanoparticle catalysis for nitrogen-based synthesis. Light can generate an optical force to capture small objects. This requires intense light – a laser, which limits optical trapping in catalysis applications. This project aims to apply plasmonic nanoparticles with normal-intensity light to take advantage of plasmonic-generated optical forces for catalytic chemical synthesis. The optical trapping/releasing of small molecules is highly selective and responsive to molecule structure and so presents a great opportunity to radically alter chemical synthesis pathways, which will be illustrated with reactions on liquid-solid and gas-solid interfaces. This highly innovative strategy will be used to discover new nitrogen-based syntheses which are both fundamentally and industrially important.Read moreRead less