Skip to main content

Nissan’s new analysis method may boost driving range of EVs

Nissan Motor Company and Nissan Arc have jointly developed an atomic analysis methodology that they claim will aid in boosting the performance of lithium-ion batteries and ultimately extend the driving range of zero-emission electric vehicles (EVs). The breakthrough was the result of a combined R&D effort between Nissan Arc, a Nissan subsidiary, Tohoku University, the National Institute for Materials Science (NIMS), the Japan Synchrotron Radiation Research Institute (JASRI) and Japan Science and Technolo
May 16, 2016 Read time: 2 mins
838 Nissan Motor Company and Nissan Arc have jointly developed an atomic analysis methodology that they claim will aid in boosting the performance of lithium-ion batteries and ultimately extend the driving range of zero-emission electric vehicles (EVs).

The breakthrough was the result of a combined R&D effort between Nissan Arc, a Nissan subsidiary, Tohoku University, the National Institute for Materials Science (NIMS), the Japan Synchrotron Radiation Research Institute (JASRI) and Japan Science and Technology Agency (JST).

The analysis examines the structure of amorphous silicon monoxide (SiO), widely seen as key to boosting next-generation lithium-ion battery (Li-ion) capacity, allowing researchers to better understand electrode structure during charging cycles.

Silicon (Si) is capable of holding greater amounts of lithium compared with common carbon-based materials, but in crystalline form possesses a structure that deteriorates during charging cycles, ultimately impacting performance. However, amorphous SiO is resistant to such deterioration.

Its base structure had been unknown, making it difficult for mass production. However, the new methodology provides an accurate understanding of the amorphous structure of SiO, based on a combination of structural analyses and computer simulations. The new findings indicate that its structure allows the storage of a larger number of Li-ions, in turn leading to better battery performance.

For more information on companies in this article

Related Content

  • Driverless vehicles will cause changes in society
    May 31, 2013
    Paul Godsmark gives his views on what the advent of autonomous vehicles would mean for the wider society. Further to your article ‘Driver not required…’ in the Jan/Feb edition of ITS International which gave some great background to autonomous road vehicle (ARVs), I feel that the bigger picture is needed to aid understanding. There is a ‘technology freight train’ heading our way that is going to transform our roadways but we don’t seem to be aware of it and, therefore, are in no hurry to react.
  • ChargeWheel sparks mobile EV charging in San Francisco
    August 16, 2019
    ChargeWheel has secured $1 million in funding to launch a mobile electric vehicle (EV) charging network in the San Francisco Bay Area. The network will be based on ChargeWheel’s mobile Energy Trailers, which don’t require a connection to the grid, and can therefore operate in any car park. The company says they offer a combined solar-powered generation and energy storage solution, and plans to deploy 100 in the Bay Area by the end of 2019. The units can simultaneously charge four EVs or up to 400 elec
  • BMW and Toyota collaborate
    June 25, 2012
    BMW Group and Toyota Motor Corporation (TMC) have signed a memorandum of understanding (MOU) concerning a mid to long term collaboration on next-generation environmentally friendly technologies. Under the partnership, the two companies have agreed to collaborate on development of lithium-ion battery technologies and to identify and discuss other possible collaborative projects. In addition, Toyota Motor Europe (TME), TMC’s European subsidiary, and BMW have entered into a contract under which BMW will supply
  • Sustainable mobility? Only possible with a multifaceted approach
    May 25, 2023
    ITS European Congress 2023 was scene for 'full and frank exchange of views'