Business Wire
Welcome
  • Log In
  • Sign Up
Search News:
Help
http://www.nrl.navy.mil/
January 14, 2013 07:19 AM Eastern Daylight Time 

NRL Designs Multi-Junction Solar Cell to Break Efficiency Barrier

WASHINGTON--(BUSINESS WIRE)--U.S. Naval Research Laboratory scientists in the Electronics Technology and Science Division, in collaboration with the Imperial College London and MicroLink Devices, Inc., Niles, Ill., have proposed a novel triple-junction solar cell with the potential to break the 50 percent conversion efficiency barrier, which is the current goal in multi-junction photovoltaic development.

“At present, the world record triple-junction solar cell efficiency is 44 percent under concentration and it is generally accepted that a major technology breakthrough will be required for the efficiency of these cells to increase much further.”

“This research has produced a novel, realistically achievable, lattice-matched, multi-junction solar cell design with the potential to break the 50 percent power conversion efficiency mark under concentrated illumination,” said Robert Walters, Ph.D., NRL research physicist. “At present, the world record triple-junction solar cell efficiency is 44 percent under concentration and it is generally accepted that a major technology breakthrough will be required for the efficiency of these cells to increase much further.”

In multi-junction (MJ) solar cells, each junction is ‘tuned’ to different wavelength bands in the solar spectrum to increase efficiency. High bandgap semiconductor material is used to absorb the short wavelength radiation with longer wavelength parts transmitted to subsequent semiconductors. In theory, an infinite-junction cell could obtain a maximum power conversion percentage of nearly 87 percent. The challenge is to develop a semiconductor material system that can attain a wide range of bandgaps and be grown with high crystalline quality.

By exploring novel semiconductor materials and applying band structure engineering, via strain-balanced quantum wells, the NRL research team has produced a design for a MJ solar cell that can achieve direct band gaps from 0.7 to 1.8 electron volts (eV) with materials that are all lattice-matched to an indium phosphide (InP) substrate.

“Having all lattice-matched materials with this wide range of band gaps is the key to breaking the current world record,” adds Walters. “It is well known that materials lattice-matched to InP can achieve band gaps of about 1.4 eV and below, but no ternary alloy semiconductors exist with a higher direct band-gap.”

The primary innovation enabling this new path to high efficiency is the identification of InAlAsSb quaternary alloys as a high band gap material layer that can be grown lattice-matched to InP. Drawing from their experience with Sb-based compounds for detector and laser applications, NRL scientists modeled the band structure of InAlAsSb and showed that this material could potentially achieve a direct band-gap as high as 1.8eV. With this result, and using a model that includes both radiative and non-radiative recombination, the NRL scientists created a solar cell design that is a potential route to over 50 percent power conversion efficiency under concentrated solar illumination.

Recently awarded a U.S. Department of Energy (DoE), Advanced Research Projects Agency-Energy (ARPA-E) project, NRL scientists, working with MicroLink and Rochester Institute of Technology, Rochester, N.Y., will execute a three year materials and device development program to realize this new solar cell technology.

Through a highly competitive, peer-reviewed proposal process, ARPA-E seeks out transformational, breakthrough technologies that show fundamental technical promise but are too early for private-sector investment. These projects have the potential to produce game-changing breakthroughs in energy technology, form the foundation for entirely new industries, and to have large commercial impacts.

The U.S. Naval Research Laboratory is the Navy's full-spectrum corporate laboratory, conducting a broadly based multidisciplinary program of scientific research and advanced technological development. The Laboratory, with a total complement of nearly 2,500 personnel, is located in southwest Washington, D.C., with other major sites at the Stennis Space Center, Miss., and Monterey, Calif. NRL has served the Navy and the nation for over 85 years and continues to meet the complex technological challenges of today's world. For more information, visit the NRL homepage or join the conversation on Twitter, Facebook, and YouTube.

Contacts

U.S. Naval Research Laboratory
Daniel Parry, 202-767-2541
daniel.parry@nrl.navy.mil

Recent Stories

  • View Press Release
    NRL Shatters Endurance Record for Small Electric UAV
    May 10, 2013
    WASHINGTON--(BUSINESS WIRE)--Using liquid hydrogen fuel stored in a new NRL-developed cryogenic fuel storage tank, the flight shatters the previous 26-hour record set by the UAV in 2009. more »
  • View Press Release
    NRL’s CT-Analyst Supports Presidential Inauguration
    April 18, 2013
    WASHINGTON--(BUSINESS WIRE)--The Naval Research Laboratory supported both the 2009 and 2013 Presidential Inaugurations with a technology called CT-Analyst. more »
  • View Press Release
    Navy Develops High Impact, High Integrity Polymer for Air, Sea, and Domestic Applications
    April 17, 2013
    WASHINGTON--(BUSINESS WIRE)--Second generation polyetheretherketone-like phthalonitrile-based composites are superior to that of other thermoset-based composites currently in use for aerospace, shi... more »
More Stories
RSS feed for Naval Research Laboratory
http://www.nrl.navy.mil/

Release Versions

  • EON: Enhanced Online News

Company Information Center

Naval Research Laboratory RSS feed for Naval Research Laboratory

Share

  • Facebook
  • Twitter
  • LinkedIn
  • Delicious
  • Reddit
  • StumbleUpon
  • Digg
  • MySpace
  • Newsvine
  • Google Bookmark
  • Yahoo! Bookmark
  • EmailEmail
Tweet
  • EmailEmail
All News
Business Wire
  • Home
    • Home
    • Membership Benefits
    • Submit a Press Release
  • News
    • All News
    • News with Multimedia
    • News by Industry
    • News by Subject
    • News by Language
    • RSS Feeds
    • Business Wire Mobile
    • Features
    • Company NewsCenters
    • Annual Reports
  • Events
    • Trade Shows & Events
    • Earnings & Conference Calls
    • Business Wire Events
  • PR Services
    • Press Release Distribution
    • Distribution Lists
    • Industry Targeting
    • LatinoWire & Ethnic Media
    • Public Policy Wire
    • Trade Show Services
    • Photos & Multimedia Marketing
    • GloMoSoMe
    • Measurement & Analytics
    • Monitoring
    • Fax & Email Services
    • Online Newsrooms
    • News Feeds
  • IR Services
    • Material News Disclosure
    • XBRL
    • EDGAR (US)
    • IPO Services
    • SEDAR (Canada)
    • European Disclosure
    • Corporate Social Responsibility (CSR)
    • Investor Targeting
    • Mobile Alerts
    • Fax & Email Services
    • IR Sites
    • IR Resource Center
  • SEO Services
    • Press Release Optimization
    • EON: Enhanced Online News
    • Webinars & Resources
  • Journalist Tools
    • PressPass: Your News
    • Conduct Surveys
    • Business Wire News Feeds
    • Business Wire News On Your Website
    • Journalism Associations
  • Support & Education
    • FAQ
    • How to Write a Press Release
    • How To Optimize a Press Release for Search
    • Find Your News Online
    • Sample Press Release
    • Features News Tips
    • International Media Tips
    • SEC Regulations
    • Exchange Guidelines
    • White Papers
    • Webinars & Podcasts
    • Get WiredIn!
  • About Us
    • Business Wire Newsroom
    • Contact Us
    • History
    • Jobs
  • About Us
  • Contact Us
  • Site Map
  • Privacy Statement
  • Terms of Use
  • ©2013 Business Wire

More Business Wire sites

  • Canada
  • UK/Ireland
  • Deutschland
  • France
  • Italy
  • Japan
  • EON: Enhanced Online News
  • Tradeshownews.com
  • PYMNTS.com

About Us

  • Business Wire Newsroom
  • Contact Us
  • Business Wired blog

News on BusinessWire.com

  • All News
  • RSS Feeds
  • Business Wire Mobile Apps

Follow Us on Twitter

  • @BusinessWire
  • @BWSportsWire
  • @BWPolitics
  • @BWCSRNews
  • @EONpr
  • @TradeshowNews
  • @BW_Canada
  • @BWIntlMedia
  • @BWInfoDiva
  • @BusinessWireFR
  • @BWLatinoWire

Like Us on Facebook

  • Business Wire
  • Tradeshow News