ARDC Research Link Australia Research Link Australia   BETA Research
Link
Australia
  • ARDC Newsletter Subscribe
  • Contact Us
  • Home
  • About
  • Feedback
  • Explore Collaborations
  • Researcher
  • Funded Activity
  • Organisation
  • Researcher
  • Funded Activity
  • Organisation
  • Researcher
  • Funded Activity
  • Organisation

Need help searching? View our Search Guide.

Advanced Search

Current Selection
Australian State/Territory : NSW
Field of Research : Nanomaterials
Research Topic : MR Spectroscopy
Clear All
Filter by Field of Research
Nanomaterials (5)
Nanotechnology (3)
Structural Chemistry and Spectroscopy (3)
Nonlinear Optics and Spectroscopy (2)
Chemical Characterisation of Materials (1)
Composite and Hybrid Materials (1)
Condensed Matter Modelling and Density Functional Theory (1)
Condensed Matter Physics (1)
Inorganic Chemistry not elsewhere classified (1)
Macromolecular and Materials Chemistry (1)
Nanomedicine (1)
Nanophotonics (1)
Physical Chemistry of Materials (1)
Synthesis of Materials (1)
Filter by Socio-Economic Objective
Expanding Knowledge in the Chemical Sciences (3)
Inorganic Industrial Chemicals (3)
Diagnostic Methods (1)
Energy Transformation not elsewhere classified (1)
Human Diagnostics (1)
Human Pharmaceutical Products not elsewhere classified (1)
Hydrogen Storage (1)
Organic Industrial Chemicals (excl. Resins, Rubber and Plastics) (1)
Preventive Medicine (1)
Production of Biofuels (Biomass) (1)
Renewable Energy not elsewhere classified (1)
Skin and Related Disorders (1)
Filter by Funding Provider
Australian Research Council (5)
Filter by Status
Closed (3)
Active (2)
Filter by Scheme
Discovery Early Career Researcher Award (2)
Discovery Projects (2)
ARC Future Fellowships (1)
Filter by Country
Australia (5)
Filter by Australian State/Territory
NSW (5)
QLD (1)
SA (1)
  • Researchers (21)
  • Funded Activities (5)
  • Organisations (10)
  • Active Funded Activity

    Discovery Early Career Researcher Award - Grant ID: DE220100846

    Funder
    Australian Research Council
    Funding Amount
    $418,388.00
    Summary
    Ordering photon energy carriers for efficient upconversion. This project aims to tackle the major challenge of upconversion nanosystems – their brightness. It will centre on building a donor/acceptor-ordered nanosystem to improve the energy transfer efficiency in hybrid nanomaterials. This ordered system will significantly improve the brightness of hybrid nanoparticles at low irradiance. Expected outcomes include a fundamental understanding of energy transfer mechanisms at sub-nm scales and a ne .... Ordering photon energy carriers for efficient upconversion. This project aims to tackle the major challenge of upconversion nanosystems – their brightness. It will centre on building a donor/acceptor-ordered nanosystem to improve the energy transfer efficiency in hybrid nanomaterials. This ordered system will significantly improve the brightness of hybrid nanoparticles at low irradiance. Expected outcomes include a fundamental understanding of energy transfer mechanisms at sub-nm scales and a new strategy to brighten the upconversion nanomaterials. This project should push upconversion nanoscience to a new generation and provide significant benefits in ultra-sensitive biomolecular assays and in vivo bioimaging.
    Read more Read less
    More information
    Funded Activity

    Discovery Projects - Grant ID: DP120104792

    Funder
    Australian Research Council
    Funding Amount
    $360,000.00
    Summary
    Skin penetration of nanoparticles promoted by particle design, formulation and application method. This project seeks to better define the determinants of nanoparticle skin penetration and subsequent disposition in the body. The data would be used to guide minimal skin penetration of 'undesirable' nanoparticles and the properties required of 'safe' nanoparticles to enable effective human skin delivery in cosmetic and dermatological products.
    More information
    Active Funded Activity

    Discovery Early Career Researcher Award - Grant ID: DE220101040

    Funder
    Australian Research Council
    Funding Amount
    $424,000.00
    Summary
    Ultrastable perovskite nanocrystals for high quality optoelectronic devices. This project aims to investigate novel highly efficient luminescent nanomaterials; by utilising perovskite nanocrystals with enhanced stability by coating or mesoporous materials. This project expects to generate new knowledge in the area of energy conversion using interdisciplinary approaches of chemistry, physics, engineering and machine learning. Expected outcomes of this project include higher efficiency display and .... Ultrastable perovskite nanocrystals for high quality optoelectronic devices. This project aims to investigate novel highly efficient luminescent nanomaterials; by utilising perovskite nanocrystals with enhanced stability by coating or mesoporous materials. This project expects to generate new knowledge in the area of energy conversion using interdisciplinary approaches of chemistry, physics, engineering and machine learning. Expected outcomes of this project include higher efficiency display and lighting, better performance of energy harvesting. The cross disciplinary collaborations pave the way to achieve the objectives of this project. This should provide significant benefits, such as better ways to convert energy from renewable sources and more efficient ways to use electrical power for lighting and display.
    Read more Read less
    More information
    Funded Activity

    Discovery Projects - Grant ID: DP150103842

    Funder
    Australian Research Council
    Funding Amount
    $334,300.00
    Summary
    Targeting nano-catalysts for sustainable biorefining and chemical processes. This joint computational-experimental project aims to address one significant global challenge of developing sustainable technologies for important chemical processes. The project expects to discover new advanced nano-catalysts via a rapid single-step process which will replace toxic and corrosive liquid acids, and low efficient solid acids, used in emerging biorefining and petrochemistry. Advanced spectroscopic studies .... Targeting nano-catalysts for sustainable biorefining and chemical processes. This joint computational-experimental project aims to address one significant global challenge of developing sustainable technologies for important chemical processes. The project expects to discover new advanced nano-catalysts via a rapid single-step process which will replace toxic and corrosive liquid acids, and low efficient solid acids, used in emerging biorefining and petrochemistry. Advanced spectroscopic studies, in synergy with state-of-the-art ab initio calculations will be used to explore nanostructure-performance relationship in depth. Such cutting-edge knowledge will have profound implications on designing innovative catalysts with tailored activity for sustainable production of biofuels and chemicals.
    Read more Read less
    More information
    Funded Activity

    ARC Future Fellowships - Grant ID: FT100100514

    Funder
    Australian Research Council
    Funding Amount
    $919,832.00
    Summary
    Functional molecular nanomaterials. The design and construction of advanced nanomaterials is a key step in the push towards more efficient energy systems and smarter technologies. Through the strategic assembly of new classes of molecular nanomaterials, this project will lead to important fundamental advances in nanoscience and will underpin a range of new high-level technologies.
    More information

    Showing 1-5 of 5 Funded Activites

    Advanced Search

    Advanced search on the Researcher index.

    Advanced search on the Funded Activity index.

    Advanced search on the Organisation index.

    National Collaborative Research Infrastructure Strategy

    The Australian Research Data Commons is enabled by NCRIS.

    ARDC CONNECT NEWSLETTER

    Subscribe to the ARDC Connect Newsletter to keep up-to-date with the latest digital research news, events, resources, career opportunities and more.

    Subscribe

    Quick Links

    • Home
    • About Research Link Australia
    • Product Roadmap
    • Documentation
    • Disclaimer
    • Contact ARDC

    We acknowledge and celebrate the First Australians on whose traditional lands we live and work, and we pay our respects to Elders past, present and emerging.

    Copyright © ARDC. ACN 633 798 857 Terms and Conditions Privacy Policy Accessibility Statement
    Top
    Quick Feedback