Skip to main content

New alternative to batteries for EVs

A new development looks set to offer an efficient alternative to lithium ion batteries for use in electric vehicles (EVs). At present the current generation of EVs feature lithium-ion batteries to store energy. However the performance of the lithium ion batteries has been criticised, particularly with regard to the recharge time required as this is considerably longer than the time needed to refuel a combustion engine-powered vehicle. While faster charging technologies are available for lithium ion batterie
November 15, 2013 Read time: 3 mins
A new development looks set to offer an efficient alternative to lithium ion batteries for use in electric vehicles (EVs). At present the current generation of EVs feature lithium-ion batteries to store energy. However the performance of the lithium ion batteries has been criticised, particularly with regard to the recharge time required as this is considerably longer than the time needed to refuel a combustion engine-powered vehicle. While faster charging technologies are available for lithium ion batteries, these reduce battery life considerably. The charging time has been identified as a major reason for the slow adoption rate of EVs around the world. However a team of engineers is working on a novel solution by developing a graphene supercapacitor that can store almost as much charge as a lithium ion battery but charges in just 16 seconds.

This new capacitor is being developed at the Gwangju Institute of Science and Technology in South Korea. The team’s high-performance supercapacitors use graphene and are said to store almost as much energy as a lithium-ion battery. In terms of practicality, they can charge and discharge in seconds, and maintain 98% of their initial value after 10,000 cycles.

The project is using a highly porous form of graphene that has a very large internal surface area. This material is produced by reducing graphene oxide particles with hydrazine in water agitated with ultrasound. The graphene powder is then packed into a coin-shaped cell, a pressure of 300kg/cm2 for five hours and dried at 140°C. The resulting graphene electrode is highly porous, which allows the electrode to accommodate much more electrolyte. And this determines the amount of charge the supercapacitor can hold. The team has measured the performance of the supercapacitor and it is said to store energy at a density of more than 64Wh/kg at a current density of 5A/gramme. That is almost comparable with lithium-ion batteries, which have an energy density of between 100 and 200Wh/kg.

The engineers say they can fully charge the supercapacitor in just 16 seconds and have repeated this some 10,000 times without a significant reduction in capacitance. This is significant as it also offers a practical alternative to the more limited working life of a lithium ion battery. The cost of the supercapacitor technology has not yet been revealed however.

Related Content

  • New marking technologies being developed
    June 30, 2014
    Innovative roadmarking technologies will increase productivity, improve conspicuity in poor conditions and offer increased wear life - Mike Woof writes. Major advances have been seen in roadmarking systems now being offered on the market. More sophisticated machinery will increase productivity and quality when installing markings, while new systems will also last longer in use. In addition, smart technologies can detect wear and provide highway authorities with an accurate picture of network safety, at comp
  • How waste plastic and soybean oil are helping our roads last longer
    April 13, 2018
    A new super-modifier is born from waste plastic in Italy and a soybean-based rejuvenator from the US spreads from its home market. By Kristina Smith The two bitumen technologies featured this month come from almost opposing sources. One emerges from the human-created plastic waste plaguing our planet, the other from a plant. However, both technologies have been created with the same aims: to increase the life of roads, saving cost and ultimately reducing the impact of road building on the planet. A coll
  • BOMAG’s versatile round vibratory plate
    April 7, 2025

    BOMAG says that its new BR 95 e round plate vibratory unit offers a powerful and compact compaction solution. Designed for efficiency and ease of use, this electric unit suits use on projects with strict emission requirements. The BR 95 e can carry out compaction tasks in confined spaces and is said to offer a reliable alternative to combustion engine models.

  • IBM and EKZ exploring balanced EV charging
    April 26, 2012
    IBM Research has teamed with EKZ, the electricity utility provider of the Canton of Zurich in Switzerland, on a new pilot project that will allow consumers to conveniently charge electric vehicles and monitor their energy costs, using mobile devices. This near real-time information will also help utility providers better manage power grid loads during peak charging times, a challenge that is set to grow as more electric vehicles are on the road. The pilot is using onboard devices fitted in several vehicl