Volkswagen ID. Cross Debuts as Affordable Electric SUV With Up to 427 km WLTP Range

More

BMW iX5 vs Porsche Cayenne Electric: How the Numbers Really Compare

More

DENZA Z Debuts with 1,582 HP, Triple-Motor Power and 9-Minute FLASH Charging

More

MG Reveals Future Technology Roadmap with Plug-in Hybrid+, SolidCore Battery and Advanced Driver Assistance

More

Truemag

  • Electric Car News
  • Electric Car Reviews
  • Plug-in Hybrids
  • Technology
  • Home
  • About Us
  • Privacy Policy
  • Advertise
  • Charging Map

Researchers Use Sand to Boost Li-ion Battery Performance

Sand-Li-IonResearchers at the University of California, Riverside’s Bourns College of Engineering have created a lithium ion battery that outperforms the current industry standard by three times. The key material: sand. Yes, sand.

“This is the holy grail – a low cost, non-toxic, environmentally friendly way to produce high performance lithium ion battery anodes,” said Zachary Favors, a graduate student working with Cengiz and Mihri Ozkan, both engineering professors at UC Riverside.

The idea came to Favors six months ago. He was relaxing on the beach after surfing in San Clemente, Calif. when he picked up some sand, took a close look at it and saw it was made up primarily of quartz, or silicon dioxide.

His research is centered on building better lithium ion batteries, primarily for personal electronics and electric vehicles. He is focused on the anode, or negative side of the battery. Graphite is the current standard material for the anode, but as electronics have become more powerful graphite’s ability to be improved has been virtually tapped out.

Researchers are now focused on using silicon at the nanoscale, or billionths of a meter, level as a replacement for graphite. The problem with nanoscale silicon is that it degrades quickly and is hard to produce in large quantities.

Sand-Li-Ion_1From left, (b) unpurified sand, (c) purified sand, and (d) vials of unpurified sand, purified sand, and nano silicon.

Favors set out to solve both these problems. He researched sand to find a spot in the United States where it is found with a high percentage of quartz. That took him to the Cedar Creek Reservoir, east of Dallas, where he grew up.

Sand in hand, he came back to the lab at UC Riverside and milled it down to the nanometer scale, followed by a series of purification steps changing its color from brown to bright white, similar in color and texture to powdered sugar.

After that, he ground salt and magnesium, both very common elements found dissolved in sea water into the purified quartz. The resulting powder was then heated. With the salt acting as a heat absorber, the magnesium worked to remove the oxygen from the quartz, resulting in pure silicon.

Sand-Li-Ion_2Schematic showing how sand is turned into pure nano-silicon.

The Ozkan team was pleased with how the process went. And they also encountered an added positive surprise. The pure nano-silicon formed in a very porous 3-D silicon sponge like consistency. That porosity has proved to be the key to improving the performance of the batteries built with the nano-silicon.

The improved performance could mean increasing the expected lifespan of silicon based electric vehicle batteries up to three times or more, which would be significant for consumers, considering replacement batteries cost thousands of dollars. The energy density is more than three times higher than that of traditional graphite based anodes, which means cell phones and tablets could last three times longer between charges.

The research was detailed in the latest issue of the journal Scientific Reports.

[source: University of California – Riverside]
Jul 11, 2014Blagojce Krivevski
Bosch And ChargePoint Named As Preferred Charging Providers for Volkswagen e-GolfHyundai ix35 Fuel Cell Covers 700km On Single Tank Of Hydrogen
You Might Also Like
 
Nissan Breaks Ground on Smyrna Battery Plant
 
Germany Launches ‘SafeButt’ Research Project for Safer EV Batteries
Blagojce Krivevski

Blagojce Krivevski is physicist and green technology lover. Keep in touch with Blagojce through his email, web site, Twitter, Linkedin, Facebook and Google+.

July 11, 2014 Electric Car News, TechnologyLi-Ion Batteries, li-ion battery, lithium-ion batteries, lithium-ion battery, University of California Riverside
Follow Us
  • facebook
  • twitter
  • google-news
  • linkedin
  • youtube
  • instagram
  • pinterest
  • rss
Recent News
Volvo Begins Customer Deliveries of New Electric EX60 SUV in Europe
July 16, 2026
JLR Expands EV Charging Service to More Than 1.1 Million Charging Points Across Europe
July 16, 2026
2027 GMC Hummer EV ICON | 25 Celebrates 25 Years of the Hummer Nameplate
July 15, 2026
2026 Hyundai IONIQ 5 N Price Drops by $6,300, Adds Tesla NACS Charging
July 15, 2026
Volkswagen ID. Cross Debuts as Affordable Electric SUV With Up to 427 km WLTP Range
July 15, 2026
About
ElectricCarsReport.com ElectricCarsReport.com is a website dedicated to pure electric vehicles and the full range of consumer information and tools about electric cars, green technology energy, and the environment.
Latest News
Volvo Begins Customer Deliveries of New Electric EX60 SUV in Europe
July 16, 2026
JLR Expands EV Charging Service to More Than 1.1 Million Charging Points Across Europe
July 16, 2026
2027 GMC Hummer EV ICON | 25 Celebrates 25 Years of the Hummer Nameplate
July 15, 2026
Get in touch

Email: contact@electriccarsreport.com

Get new stories by email:
Archives
  • facebook
  • twitter
  • google-news
  • linkedin
  • youtube
  • instagram
  • pinterest
  • rss
DMCA.com
© ElectricCarsReport.com | All Rights Reserved.