Home > Press > TCD Nanoscientist Receives Major European Research Grant to Support Development of Next Generation Materials
![]() |
Principal Investigator at CRANN, the TCD and UCC based nanoscience research institute, and Professor in the School of Physics, Trinity College Dublin Jonathan Coleman been awarded a prestigious European Research Commission (ERC) Starter Grant of €1.5 million |
Abstract:
Professor Jonathan Coleman, Professor of Physics, Trinity College Dublin has been awarded a prestigious European Research Council (ERC) Starter Grant of €1.5 million. He is one of Irelands' leading nanoscientists and is a Principal Investigator at CRANN, the TCD and UCC based nanoscience research institute.
The awards are given to only 300 top scientists across Europe, less than 10% of those who apply. The awards recognise scientists who are working on research with major potential so that they will have the funding and encouragement to develop cutting edge science.
Professor John Donegan, Head of the School of Physics commented, "Johnny Coleman is a scientist of great international repute. His publication record is extraordinary and he is a gifted communicator. The School is rightly proud of his achieving the ERC award and we fully expect great new science will arise from this research".
Professor John Boland, Director of CRANN said, "These awards are only made to Europe's top scientists and it is great recognition of the work being done by Professor Coleman and his team to develop next-generation materials. Ireland has built up its expertise in the area of nanoscience which is globally recognised, as evidenced by the increasing number of international research grants we are attracting. Ireland is beginning to take a globally recognised leadership position in Nanoscience and scientists of the calibre of Professor Coleman are critical to building our reputation."
The research grant is based on Professor Coleman's work with graphene and his team's novel method of being able to split graphite (millions of graphene sheets stuck tightly together) down into individual layers of graphene, which could be used to make stronger and lighter materials. They could be incorporated into products that uses plastic, making composites which are stronger, lighter and more environmentally friendly e.g. aircraft parts, car parts, sport and household goods.
Two of the materials that Professor Coleman is currently researching are Bismuth Telluride and Molybdenum Disulfide. Bismuth Telluride is used to generate energy from waste heat, for example from car engines or in nuclear plants. Professor Coleman's method of separating graphene using a liquid process could be applied to bismuth telluride, which could then be coated onto thin films and attached to the side of a car to capture the lost heat energy and convert it into usable electrical energy.
Molybolenum disulfide is currently being evaluated for use in batteries. However production of this is currently time consuming and complicated. Using the methods developed by Professor Coleman's group, one would be able to produce and apply the films in a simpler and faster way, allowing industrialisation of the process.
####
For more information, please click here
Contacts:
Central Switchboard
+353 1 896 1000
Copyright © Trinity College Dublin
If you have a comment, please Contact us.Issuers of news releases, not 7th Wave, Inc. or Nanotechnology Now, are solely responsible for the accuracy of the content.
Related News Press |
News and information
Closing the gaps — MXene-coating filters can enhance performance and reusability February 28th, 2025
Rice researchers harness gravity to create low-cost device for rapid cell analysis February 28th, 2025
Possible Futures
Closing the gaps — MXene-coating filters can enhance performance and reusability February 28th, 2025
Rice researchers harness gravity to create low-cost device for rapid cell analysis February 28th, 2025
Academic/Education
Rice University launches Rice Synthetic Biology Institute to improve lives January 12th, 2024
Multi-institution, $4.6 million NSF grant to fund nanotechnology training September 9th, 2022
Nanotubes/Buckyballs/Fullerenes/Nanorods/Nanostrings
Chainmail-like material could be the future of armor: First 2D mechanically interlocked polymer exhibits exceptional flexibility and strength January 17th, 2025
Innovative biomimetic superhydrophobic coating combines repair and buffering properties for superior anti-erosion December 13th, 2024
Announcements
Closing the gaps — MXene-coating filters can enhance performance and reusability February 28th, 2025
Rice researchers harness gravity to create low-cost device for rapid cell analysis February 28th, 2025
Energy
KAIST researchers introduce new and improved, next-generation perovskite solar cell November 8th, 2024
Unveiling the power of hot carriers in plasmonic nanostructures August 16th, 2024
Groundbreaking precision in single-molecule optoelectronics August 16th, 2024
Development of zinc oxide nanopagoda array photoelectrode: photoelectrochemical water-splitting hydrogen production January 12th, 2024
Automotive/Transportation
Leading the charge to better batteries February 28th, 2025
Researchers’ approach may protect quantum computers from attacks March 8th, 2024
Battery Technology/Capacitors/Generators/Piezoelectrics/Thermoelectrics/Energy storage
Leading the charge to better batteries February 28th, 2025
Enhancing transverse thermoelectric conversion performance in magnetic materials with tilted structural design: A new approach to developing practical thermoelectric technologies December 13th, 2024
Breakthrough brings body-heat powered wearable devices closer to reality December 13th, 2024
Grants/Sponsored Research/Awards/Scholarships/Gifts/Contests/Honors/Records
New discovery aims to improve the design of microelectronic devices September 13th, 2024
Physicists unlock the secret of elusive quantum negative entanglement entropy using simple classical hardware August 16th, 2024
Atomic force microscopy in 3D July 5th, 2024
![]() |
||
![]() |
||
The latest news from around the world, FREE | ||
![]() |
![]() |
||
Premium Products | ||
![]() |
||
Only the news you want to read!
Learn More |
||
![]() |
||
Full-service, expert consulting
Learn More |
||
![]() |