Making plants better, making Australia better? A history of genetic modification science, policy, and community attitudes in Australia. This project will document and analyse the history of the development of genetic modification (GM) science and policy, and the associated community attitudes and activism efforts in Australia over the last 40 years, with a focus on the development of GM for food and agricultural purposes. In addition to producing a rich historical narrative of critical scientifi ....Making plants better, making Australia better? A history of genetic modification science, policy, and community attitudes in Australia. This project will document and analyse the history of the development of genetic modification (GM) science and policy, and the associated community attitudes and activism efforts in Australia over the last 40 years, with a focus on the development of GM for food and agricultural purposes. In addition to producing a rich historical narrative of critical scientific and policy developments associated with GM in Australia. This project will explore how Australians respond to new scientific ideas and technologies, and use this evidence as the basis for a case study of prospects for future community involvement in the development of science policy particularly in association with emerging technologies.Read moreRead less
Linkage Infrastructure, Equipment And Facilities - Grant ID: LE130100168
Funder
Australian Research Council
Funding Amount
$1,235,000.00
Summary
Adelaide Nuclear Magnetic Resonance (NMR). Nuclear Magnetic Resonance (NMR) spectroscopy is a fundamental underpinning technology for the advancement of the many sciences which require determination of the structure of molecules. This project will significantly enhance and broaden NMR capabilities in South Australia and advance world-class research in chemistry, materials science, nanotechnology and biochemistry.
Linkage Infrastructure, Equipment And Facilities - Grant ID: LE140100087
Funder
Australian Research Council
Funding Amount
$410,000.00
Summary
Advanced Macromolecular Materials Characterisation Facility (AMMCF). Advanced macromolecular materials characterisation facility: The facility will allow precise characterisation of (bio)macromolecular materials, from chemical structures and composition as a function of size or biodistribution, to film thickness in multi-layer materials, to material hydrophobicity and permeability. Novel information derived from these state-of-the-art instruments is highly valuable in understanding structure-pro ....Advanced Macromolecular Materials Characterisation Facility (AMMCF). Advanced macromolecular materials characterisation facility: The facility will allow precise characterisation of (bio)macromolecular materials, from chemical structures and composition as a function of size or biodistribution, to film thickness in multi-layer materials, to material hydrophobicity and permeability. Novel information derived from these state-of-the-art instruments is highly valuable in understanding structure-property relationships, which are crucial for the development of the next generation of advanced materials with applications in electronics, optics, sensors, membranes, nanocoatings, biomaterials and polymer therapeutics. This facility underpins the efforts of the participating institutes in increasing the quality and quantity of research outcomes.Read moreRead less
Discovery Early Career Researcher Award - Grant ID: DE160100306
Funder
Australian Research Council
Funding Amount
$373,536.00
Summary
Functional Superstructures of Microporous Metal-Organic Frameworks. This project aims to develop metal-organic framework (MOF) superstructures as a new materials platform. MOFs are an emerging class of porous adsorbents that are expected to fulfil a crucial role as functional materials in industrially important applications, including molecular separations and heterogeneous catalysis. However, there is an urgent need for convenient methods to integrate the attractive properties of MOFs with the ....Functional Superstructures of Microporous Metal-Organic Frameworks. This project aims to develop metal-organic framework (MOF) superstructures as a new materials platform. MOFs are an emerging class of porous adsorbents that are expected to fulfil a crucial role as functional materials in industrially important applications, including molecular separations and heterogeneous catalysis. However, there is an urgent need for convenient methods to integrate the attractive properties of MOFs with the unique features of meso- and macrostructured materials, and for a fundamental understanding of the influence of structuring on their material properties. The project intends to synthesise structuralised MOFs as a platform for studies related to their adsorptive and dynamic properties, and to study these systems as next-generation materials for hydrocarbon separations.Read moreRead less
The emotional construction of self representation. This project develops and defends the novel idea that self representation is an artefact of emotional processing. The account will involve case studies of psychiatric disorder characterised by developmental or acquired problems of self representation such as depersonalisation disorder and personality disorders.
Discovery Early Career Researcher Award - Grant ID: DE170100510
Funder
Australian Research Council
Funding Amount
$350,977.00
Summary
How first-in-family males transition to Australian university life. This project aims to study how gender, ethnicity and social class affect Australian males from low socio-economic backgrounds as they transition to university. Despite an emphasis on widening participation in the Australian university sector, the path to university is still precarious, particularly for first-in-family students. Males from low socio-economic backgrounds remain severely underrepresented in higher education, and ho ....How first-in-family males transition to Australian university life. This project aims to study how gender, ethnicity and social class affect Australian males from low socio-economic backgrounds as they transition to university. Despite an emphasis on widening participation in the Australian university sector, the path to university is still precarious, particularly for first-in-family students. Males from low socio-economic backgrounds remain severely underrepresented in higher education, and how these students experience university life is unclear. The project will use qualitative research to better understand the experiences of first-in-family males entering universities in different locales/institutions across Australia. Expected outcomes include improved targeted support systems to enable their success.Read moreRead less
Deciphering Electron Transfer Pathways in Bacteria. Enzyme catalysed oxidation reactions are key players in the production of naturally occurring biologically active molecules. These processes are tightly regulated by their electron transfer partners. This project aims to characterise new electron transfer ferredoxin proteins from a metabolically diverse bacterium. These ferredoxins, important in many bacteria, contain different non-cysteine amino acids in their iron-sulfur cluster binding motif ....Deciphering Electron Transfer Pathways in Bacteria. Enzyme catalysed oxidation reactions are key players in the production of naturally occurring biologically active molecules. These processes are tightly regulated by their electron transfer partners. This project aims to characterise new electron transfer ferredoxin proteins from a metabolically diverse bacterium. These ferredoxins, important in many bacteria, contain different non-cysteine amino acids in their iron-sulfur cluster binding motifs and are poorly defined. The outcomes will advance understandings of electron transfer, a fundamental process. This will allow strategies to combat human and plant pathogens and unlock the potential of these systems as biocatalysts for the green chemical synthesis of complex and valuable chemicals.Read moreRead less
Open framework organic materials for CO2 capture and conversion. The reduction of CO2 emissions from coal-fired power plants is a technological challenge of global significance. This project will address this challenge by developing a unique system, based upon open framework materials, that will selectively capture CO2 from gas streams and then catalyse its transformation into industrially useful chemicals.
Vapour phase detection of chemical warfare agents. This project aims to create luminescent plastic optoelectronic materials that can detect airborne chemical warfare agents, particularly nerve agents. Such agents are often odourless and invisible at lethal concentrations, so technology must detect and identify them before exposure. The intended outcomes are design rules for sensitive and selective materials that can be used in a handheld infield detector to sense chemical warfare agents based on ....Vapour phase detection of chemical warfare agents. This project aims to create luminescent plastic optoelectronic materials that can detect airborne chemical warfare agents, particularly nerve agents. Such agents are often odourless and invisible at lethal concentrations, so technology must detect and identify them before exposure. The intended outcomes are design rules for sensitive and selective materials that can be used in a handheld infield detector to sense chemical warfare agents based on the materials’ photophysical properties, and new analytical methods and sensing protocols. This research will be of interest to security agencies in Australia and internationally, and will better protect our military.Read moreRead less
The truth about false memory. This project is aimed at determining whether reports of long-forgotten episodes of sexual abuse arising during psychotherapy should be regarded as memories or not. This issue hinges on a number of conceptual questions about memory. The project will illuminate the debate on recovered memories of sexual abuse by addressing those questions.