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
Field of Research : Microtechnology
Field of Research : Nanomaterials
Clear All
Filter by Field of Research
Microtechnology (5)
Nanomaterials (5)
Nanotechnology (4)
Functional Materials (2)
Nanomanufacturing (2)
Biomechanical Engineering (1)
Control Systems, Robotics and Automation (1)
Manufacturing Engineering (1)
Manufacturing Robotics and Mechatronics (excl. Automotive Mechatronics) (1)
Polymers and Plastics (1)
Textile Technology (1)
Transport Properties and Non-Equilibrium Processes (1)
Filter by Socio-Economic Objective
Expanding Knowledge in Engineering (4)
Expanding Knowledge in the Physical Sciences (2)
Appliances and Electrical Machinery and Equipment (1)
Cardiovascular System and Diseases (1)
Expanding Knowledge in Technology (1)
Expanding Knowledge in the Earth Sciences (1)
Expanding Knowledge in the Medical and Health Sciences (1)
Medical Instruments (1)
Filter by Funding Provider
Australian Research Council (5)
Filter by Status
Closed (4)
Active (1)
Filter by Scheme
Discovery Projects (2)
Linkage Infrastructure, Equipment and Facilities (2)
Discovery Early Career Researcher Award (1)
Filter by Country
Australia (5)
Filter by Australian State/Territory
ACT (3)
NSW (3)
VIC (2)
QLD (1)
  • Researchers (32)
  • Funded Activities (5)
  • Organisations (31)
  • Funded Activity

    Linkage Infrastructure, Equipment And Facilities - Grant ID: LE210100156

    Funder
    Australian Research Council
    Funding Amount
    $289,500.00
    Summary
    3D Two-Photon Nanoprinter for Advanced Multi-Functional Materials & Devices. The Nanoscribe Photonic Professional GT2 Two-Photon 3D Printer enables tailoring materials’ architecture at nanoscale. This results in unique optical, mechanical, electrical, chemical, biochemical, and acoustic properties enabling a wealth of cutting-edge research activities in variety of fields including mechanical/optical/electrical metamaterials, bioinspired hard/soft materials, biomaterials (e.g., structured cell-ti .... 3D Two-Photon Nanoprinter for Advanced Multi-Functional Materials & Devices. The Nanoscribe Photonic Professional GT2 Two-Photon 3D Printer enables tailoring materials’ architecture at nanoscale. This results in unique optical, mechanical, electrical, chemical, biochemical, and acoustic properties enabling a wealth of cutting-edge research activities in variety of fields including mechanical/optical/electrical metamaterials, bioinspired hard/soft materials, biomaterials (e.g., structured cell-tissue interfaces), biomedical devices (implantable devices and drug-delivery systems), nanofluidics, and photonic crystals. In each of these fields, we will use GT2 to print variety of polymers, hydrogels, metals and ceramics, for example by printing polymer-derived nanoceramics that will be simultaneously strong and tough.
    Read more Read less
    More information
    Active Funded Activity

    Versatile Laser Processing System For Multi-disciplinary Research .

    Funder
    Australian Research Council
    Funding Amount
    $480,000.00
    More information
    Funded Activity

    Discovery Projects - Grant ID: DP120102980

    Funder
    Australian Research Council
    Funding Amount
    $560,000.00
    Summary
    Ultra-fast alchemy: a new strategy to synthesise super-dense nanomaterials. We have recently created a new super-dense aluminium phase by ultrafast laser microexplosion. This project will search further for new super-dense material phases with drastically different and exotic properties, such as those inside planets and stars, and which have great potential as new nanomaterials for industrial applications.
    More information
    Funded Activity

    Discovery Early Career Researcher Award - Grant ID: DE120102451

    Funder
    Australian Research Council
    Funding Amount
    $375,000.00
    Summary
    Spatial control of nanoporous materials for microfabrication. Treatment of numerous medical conditions will be revolutionised by biomedical devices that can deliver or remove selected molecules in precise locations (for example oxygenation of tissues, release of antitumor agents, toxin neutralisation). New lithographic protocols will be developed to enable the use of nanoporous filters directly for such purposes.
    More information
    Funded Activity

    Discovery Projects - Grant ID: DP110101073

    Funder
    Australian Research Council
    Funding Amount
    $800,000.00
    Summary
    Mechanical advantage: biomimetic artificial muscles for micro-machines. This project will develop better ways to operate miniature machines by copying the way that muscle operates in Nature. The outcome will be important for portable devices like digital cameras that need small, efficient motors. The artificial muscles developed in this project may also be used in medical prosthetics and more agile robots.
    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