Skip to main content

Contact lens technology could offer alternative to battery power storage

Research by UK organisations the University of Surrey and Augmented Optics, in collaboration with the University of Bristol, has developed technology which could revolutionise the capabilities of appliances that have previously relied on battery power to work. It could also revolutionise electric cars, allowing the possibility for them to recharge as quickly a regular non-electric car refuels with petrol, instead of the current process which takes approximately 6-8 hours. They believe the development by
December 7, 2016 Read time: 2 mins
Research by UK organisations the University of Surrey and Augmented Optics, in collaboration with the University of Bristol, has developed technology which could revolutionise the capabilities of appliances that have previously relied on battery power to work. It could also revolutionise electric cars, allowing the possibility for them to recharge as quickly a regular non-electric car refuels with petrol, instead of the current process which takes approximately 6-8 hours.

They believe the development by Augmented Optics could translate into very high energy density super-capacitors making it possible to recharge a mobile phone, laptop or other mobile devices in just a few seconds.

They say the technology, adapted from the principles used to make soft contact lenses, which was developed by Dr Donald Highgate of Augmented Optics, could have an impact across a number of industries, including transport, aerospace, energy generation and household applications such as mobile phones, flat screen electronic devices and biosensors.  Super-capacitors, an alternative power source to batteries, store energy using electrodes and electrolytes and both charge and deliver energy quickly, unlike conventional batteries which do so in a much slower, more sustained way. They have the ability to charge and discharge rapidly over very large numbers of cycles.  However, because of their poor energy density per kilogramme, approximately just one twentieth of existing battery technology, they have, until now, been unable to compete with conventional battery energy storage in many applications.

Super-capacitor buses are already being used in China, but have a very limited range; this technology could allow them to travel a lot further between recharges.  Instead of recharging every 2-3 stops this technology could mean they only need to recharge every 20-30 stops and that will only take a few seconds.

Elon Musk, of Tesla and SpaceX, has previously stated his belief that super-capacitors are likely to be the technology for future electric air transportation.

Related Content

  • California aims to generate electric power from traffic congestion
    April 20, 2017
    California is planning a US$2.3 million initiative that will generate electrical power from traffic, according to the San Francisco Chronicle. The California Energy Commission recently voted to fund two piezoelectricity projects, which convert pressure into power. One pilot will test a 200-foot-long piece of asphalt on UC-Merced’s campus, which is designing a 200-foot stretch of asphalt that will be sowed with inch-wide piezoelectric generators, which will be stacked within arrays below the road where it is
  • Computer technology increasingly aids traffic management
    February 3, 2012
    Alan Perrott, Tyco Fire & Integrated Solutions (UK) Ltd, looks at trends in CCTV technology for traffic surveillance applications
  • Methanol range extender for fuel cell vehicle
    July 17, 2012
    The innovative QBeak electric car is to benefit from a sophisticated methanol fuel cell range extender that will give it a range of at least 800km. Development work is being carried out on the project by a consortium of Danish companies. The plan is to develop a novel, range-extended electric vehicle that uses biomethanol as a fuel source. TheModularEnergyCarrier concept (MECc) project has just been granted funding from the Danish government. The reworked electric car is expected to deliver high market pote
  • Elimination of electric vehicle systems
    June 24, 2016
    According to IDTechEx Research reports, Power Electronics for Electric Vehicles 2016-2026, Mild Hybrid 48V Vehicles 2016-2031 and Structural Electronics 2015-2025: Applications, Technologies, Forecasts”, el4ctric vehicles (EVs)have a cost challenge: hybrids have complexity problems meaning reliability and space issues. Extra power electronic units arrive for tasks such as a vehicle-to-grid, vehicle-to-house and inductive charging. Many more will be added in future such as regeneration modules - thermoelect