ARC Centre of Excellence - Australian Centre for Electromaterials Science. The Centre will tackle some of the biggest challenges facing society: those of renewable energy, sustainable industries and enhancing human health. Improvements in all these areas are possible by developing electromaterials with improved efficiency in the generation and transfer of electrical charge. By developing new nano-materials and new theories to explain their behaviour, the Centre will make advances in the areas ....ARC Centre of Excellence - Australian Centre for Electromaterials Science. The Centre will tackle some of the biggest challenges facing society: those of renewable energy, sustainable industries and enhancing human health. Improvements in all these areas are possible by developing electromaterials with improved efficiency in the generation and transfer of electrical charge. By developing new nano-materials and new theories to explain their behaviour, the Centre will make advances in the areas of human health through the regeneration of damaged nerves (eg. in spinal injury) and development of artificial muscles; in renewable energy (plastic solar cells, lightweight batteries and electronic textiles) and in sustainable industries (recovery of precious metals and new corrosion protection technologies).Read moreRead less
Hierarchical assembly of graphene oxide nanoparticles as bionanointerface. This project aims to develop a state-of-the-art fabrication methodology to develop large area polymer/graphene hybrid nanoparticle patterns to precisely modulate cell guidance and regeneration by exogenous electrical stimulation. Polymers and graphene have emerged as the main contenders for the development of soft biocompatible platforms. However, their applicability has been limited due to difficulties in patterning and ....Hierarchical assembly of graphene oxide nanoparticles as bionanointerface. This project aims to develop a state-of-the-art fabrication methodology to develop large area polymer/graphene hybrid nanoparticle patterns to precisely modulate cell guidance and regeneration by exogenous electrical stimulation. Polymers and graphene have emerged as the main contenders for the development of soft biocompatible platforms. However, their applicability has been limited due to difficulties in patterning and their consequent integration under physiological conditions. This project will advance both fundamental and practical knowledge at the forefront of nanotechnology and cell biology, whilst providing training to the research community at the cutting edge of science. The project will also deliver intellectual property, which will position Australia at the forefront of bionanotechnology.Read moreRead less
Discovery Early Career Researcher Award - Grant ID: DE150101390
Funder
Australian Research Council
Funding Amount
$363,536.00
Summary
Invasive Synthetic Biomedical Brain Device: Ethical and Policy Implications. The use of novel, invasive, synthetic, biomedical brain technologies such as predictable brain devices, 3D printed biomaterials, additive-bio-fabricated materials, and drug delivery systems have raised unprecedented ethical issues for research. Given the therapeutic potential and high risk of harm associated with synthetic biomedical applications, it is critical to identify the ethical issues before these novel applicat ....Invasive Synthetic Biomedical Brain Device: Ethical and Policy Implications. The use of novel, invasive, synthetic, biomedical brain technologies such as predictable brain devices, 3D printed biomaterials, additive-bio-fabricated materials, and drug delivery systems have raised unprecedented ethical issues for research. Given the therapeutic potential and high risk of harm associated with synthetic biomedical applications, it is critical to identify the ethical issues before these novel applications are widely used in human clinical trials. This project aims to explore how research trial guidelines can address the ethical issues raised by these new brain applications.Read moreRead less
Material Transfer Agreements and Open Science in the Genome Era. Research paradigms are changing rapidly in the Genome Era. Open access databases are increasingly popular and are required by public funding agencies. The role of material transfer agreements (MTAs) in this open access era is not clear. This project aims to assess the extent to which MTAs facilitate exchanges of biological materials between organisation in Australia and internationally. The project will assess whether MTAs are refl ....Material Transfer Agreements and Open Science in the Genome Era. Research paradigms are changing rapidly in the Genome Era. Open access databases are increasingly popular and are required by public funding agencies. The role of material transfer agreements (MTAs) in this open access era is not clear. This project aims to assess the extent to which MTAs facilitate exchanges of biological materials between organisation in Australia and internationally. The project will assess whether MTAs are reflecting the open data access movement or maintaining traditional closed proprietary practices. The project will make policy, ethical and legal recommendations for the development of MTAs to promote exchange of materials nationally and internationally and to facilitate the developing collaborative research culture. Read moreRead less
The age of personalised medicine: regulatory challenges for Australia. Australia is entering an age of personalised medicine where therapies and tests will be based on individual genetic profiles. This project aims to ensure that there is a best practice regulatory and governance environment for facilitating responsible research and clinical service delivery through a process of evidence-based regulatory reform.