Nanotechnology Now – Press Release: The first nanotube applications award honors the scientist revolutionizing Li-ion batteries


Home > Press > The first nanotube applications award honors the scientist revolutionizing Li-ion batteries

Abstract:
The first international award established for scientists developing industrial applications of single wall carbon nanotubes has announced its inaugural winner. The TUBALL Award has been presented to Prof. Jonathan Coleman from the AMBER Centre for his extensive work on carbon nanotubes, most recently on developing technology that increases the energy density of lithium-ion batteries by 2.5 times that of any existing battery on the market.

The first nanotube applications award honors the scientist revolutionizing Li-ion batteries


Luxembourg | Posted on December 17th, 2019

Single wall carbon nanotubes (SWCNTs) are often called “the building material of the future” because of their ability to improve almost all materials around us. Thousands of researchers across the globe are working with SWCNTs and achieving impressive scientific results. The TUBALL Awards were established to help bring these breakthrough developments to life. These awards are the first to acknowledge R&D projects using SWCNTs across the whole range of their commercial applications.

The TUBALL Awards were initiated by OCSiAl, the world’s largest SWCNT manufacturer. Knowing the immense potential of SWCNTs to change materials, the company actively supports the transformation of the most promising projects from laboratory to industry. All scientists interested in project development with SWCNTs, irrespective of whether they also wish to apply to the award, are welcome to request a free sample of TUBALL nanotubes.

The first awardee, Prof. Jonathan Coleman from the AMBER Centre at Trinity College Dublin, collaborating with Nokia-Bell Labs Ireland and other AMBER researchers, developed the technology that uses TUBALL SWCNTs in the cathode and anode of a lithium-ion battery instead of the conventional additive carbon black. “Nanotubes in batteries are not just for conductivity. They are also for mechanics,” said Prof. Coleman. “This means that you have both very good electrical connection to the particles and also fantastic mechanical properties.” Thanks to these properties of SWCNTs, the research group was able to make the first-ever battery electrode that works at 100% of its theoretical capacity.

The results that Prof. Coleman and the AMBER/Nokia team have achieved in the laboratory pave the way to make batteries more compact, scalable for industry, quicker to charge and with 2.5 times more energy density than any battery currently on the market. This breakthrough can enable longer-lasting smartphones, mass electric vehicles, and home wind turbines with enough storage capacity.

The TUBALL Awards acknowledge the best SWCNT R&D projects once per year. The next round of applications starts from January 1, 2020, and will again give applicants an opportunity to win $10,000 for the development of their project. Any individual researcher or research group can participate and get TUBALL nanotubes for free. The award will be given to projects that are designed to significantly improve the properties of industrial materials and that contribute to the development of global industries.

####

For more information, please click here

Contacts:
Anastasia Zirka
PR & Advertising Manager
+7 913 989 9239

Copyright © OCSiAl Group

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.

Bookmark:
Delicious
Digg
Newsvine
Google
Yahoo
Reddit
Magnoliacom
Furl
Facebook

SWCNT free sample:

TUBALL Awards:

News and information

Growing carbon nanotubes with the right twist: Researchers synthetize nanotubes with a specific structure expanding previous theories on carbon nanotube growth December 13th, 2019

Better studying superconductivity in single-layer graphene| An existing technique is better suited to describing superconductivity in pure, single-layer graphene than current methods December 13th, 2019

Tiny magnetic particles enable new material to bend, twist, and grab December 13th, 2019

New laser technique images quantum world in a trillionth of a second: Technique captures a process that commonly causes electrical resistance in materials while, in others, can cause the absence of resistance, or superconductivity December 13th, 2019

Nanotubes/Buckyballs/Fullerenes/Nanorods

Growing carbon nanotubes with the right twist: Researchers synthetize nanotubes with a specific structure expanding previous theories on carbon nanotube growth December 13th, 2019

Research shows old newspapers can be used to grow carbon nanotubes: Newspapers provide a green, economical way to produce carbon nanotubes November 22nd, 2019

NAUM’19 reviewed the increasing contribution of graphene nanotubes to sustainable development November 21st, 2019

Moving diagnostics out of the lab and into your hand: Electrochemical sensor platform technology could enable portable, multiplexed, point-of-care diagnostics for a wide range of applications November 11th, 2019

Materials/Metamaterials

Tiny magnetic particles enable new material to bend, twist, and grab December 13th, 2019

Silver improves the efficiency of monograin layer solar cells December 12th, 2019

How to induce magnetism in graphene: Elusive molecule predicted in the 1970s finally synthesized December 11th, 2019

Toward more efficient computing, with magnetic waves: Circuit design offers a path to ‘spintronic’ devices that use little electricity and generate practically no heat November 29th, 2019

Announcements

Growing carbon nanotubes with the right twist: Researchers synthetize nanotubes with a specific structure expanding previous theories on carbon nanotube growth December 13th, 2019

Better studying superconductivity in single-layer graphene| An existing technique is better suited to describing superconductivity in pure, single-layer graphene than current methods December 13th, 2019

Tiny magnetic particles enable new material to bend, twist, and grab December 13th, 2019

New laser technique images quantum world in a trillionth of a second: Technique captures a process that commonly causes electrical resistance in materials while, in others, can cause the absence of resistance, or superconductivity December 13th, 2019

Grants/Sponsored Research/Awards/Scholarships/Gifts/Contests/Honors/Records

Tiny magnetic particles enable new material to bend, twist, and grab December 13th, 2019

New laser technique images quantum world in a trillionth of a second: Technique captures a process that commonly causes electrical resistance in materials while, in others, can cause the absence of resistance, or superconductivity December 13th, 2019

A record-setting transistor: Engineering professor designs transistor that could enable cheaper, faster wireless communications November 29th, 2019

The Greenest Diet: Bacteria Switch to Eating Carbon Dioxide: Such bacteria may, in the future, contribute to new, carbon-efficient technologies November 27th, 2019

Leave a Reply

Your email address will not be published. Required fields are marked *