Skip to main content

Potential to charge an EV in minutes claim

The University of Illinois at Urbana-Champaign has entered into a licensing agreement with Xerion Advanced Battery Corp. under which Xerion has the exclusive right to bring the University’s StructurePore battery-charging technology to the market. The StructurePore technology was developed by Paul Braun, Ph. D., of the Department of Materials, Science & Engineering at the University of Illinois, who is presently also an officer and director of Xerion. He and his colleagues believe that the StructurePore tech
April 17, 2012 Read time: 2 mins
4963 The University of Illinois at Urbana-Champaign has entered into a licensing agreement with 4964 Xerion Advanced Battery Corp. under which Xerion has the exclusive right to bring the University’s StructurePore battery-charging technology to the market.

The StructurePore technology was developed by Paul Braun, Ph. D., of the Department of Materials, Science & Engineering at the University of Illinois, who is presently also an officer and director of Xerion. He and his colleagues believe that the StructurePore technology has the potential to, for example, instantly charge cell phone batteries and rapidly charge laptops and electric cars, all within a matter of several minutes.

Xerion and the University believe that the patented StructurePore battery technology will enable Xerion to develop a rechargeable battery with significantly higher electrical capacity than that which is presently available with ultra-fast charge / ultra-fast discharge capabilities. Recent research and preliminary testing is said to have demonstrated to Xerion and its principals that the technology can function in both nickel metal hydride and lithium ion based batteries.

Xerion intends to direct future development of the technology by utilising higher power output chemistries. By focusing on these new electrode architectures, Dr. Braun and his Xerion colleagues believe that they may have found a way to greatly reduce the polarisation effects of current batteries, thereby greatly increasing power and density. Xerion says it believes that the development of a new prototype battery will contain what the company has labelled as ‘superhighway-like’ avenues for electrons and ions to move at ultra fast speeds while filling a charge and thus resulting in rapid battery charging capability.

This month, Xerion team members from Illinois, Colorado and Ohio will be moving into offices in the University of Illinois Research Park to collaborate with Dr. Braun on refinements to the technology.

Related Content

  • January 25, 2012
    Smartphone - the next technology for charging and tolling?
    With all the debates over the most suitable future technology or technologies for charging and tolling, is it not time for the industry to look at what the rest of ITS is doing and bring a rank outsider - the smart phone - closer into the fold? By Jack Opiola, D'Artagnan Consulting LLC
  • June 10, 2021
    Robotic Research: harnessing AV potential
    Robotic Research is leading in AV R&D, from work with the US Army to enabling the first automated BRT line in North America: Gordon Feller assesses what the company is doing
  • February 26, 2016
    Traction motors for electric vehicles change radically
    According to Franco Gonzalez, senior technology analyst, IDTechEx, there are about 200 companies making traction motors for electric vehicles, rather like the 200 making the lithium-ion batteries that increasingly power them. However, whereas three types of lithium-ion battery chemistry and construction are taking almost all of the business, with traction motors the situation is much more complex because the diversity of needs calls for many very different types of motor from brushless out-runner motors for
  • July 25, 2012
    Continental and SK Innovation team up on battery technology
    South Korean company SK Innovation and international automotive supplier Continental, have signed an agreement founding a jointly managed company to develop and supply battery technology for the automotive industry. The know-how of both firms will be concentrated in this new company with the goal of mutually developing, producing and globally marketing lithium-ion battery systems for cars.