Space Travel News  
New Fabrication Technique Yields Nanoscale UV LEDs

Micrograph of a complete nanowire LED with the end contact. The long nanowire (A) is about 110 micrometers long, a shorter nanowire (B) crosses it. The bright circular section is the metal post from which the nanowires are aligned. Credit: NIST
by Staff Writers
Washington DC (SPX) May 28, 2007
Researchers at the National Institute of Standards and Technology (NIST), in collaboration with scientists from the University of Maryland and Howard University, have developed a technique to create tiny, highly efficient light-emitting diodes (LEDs) from nanowires. As described in a recent paper, the fabricated LEDs emit ultraviolet light-a key wavelength range required for many light-based nanotechnologies, including data storage-and the assembly technique is well-suited for scaling to commercial production.

Light-based nanoscale devices, such as LEDs, could be important building blocks for a new generation of ultracompact, inexpensive technologies, including sensors and optical communications devices. Ultraviolet LEDs are particularly important for data-storage and biological sensing devices, such as detectors for airborne pathogens.

Nanowires made of a particular class of semiconductors that includes aluminum nitride, gallium nitride and indium nitride are the most promising candidates for nanoscale LEDs. But, says NIST researcher Abhishek Motayed, "The current nanowire LEDs are created using tedious nanowire manipulation methods and one-by-one fabrication techniques, which makes them unsuitable for commercial realization."

The NIST team used batch fabrication techniques, such as photolithography (printing a pattern into a material using light, similar to photography), wet etching and metal deposition. They aligned the nanowires using an electric field, eliminating the delicate and time-consuming task of placing each nanowire separately.

A key feature of the new nanowire LEDs is that they are made from a single compound, gallium nitride (GaN). Each LED consists of an "n-type" GaN nanowire placed on the surface of a "p-type" GaN thin film. "N-type" and "p-type" refer to semiconductors with, respectively, an abundance of electrons and an abundance of positively charged electron vacancies called holes. P-n junctions made from the same basic compound yield more efficient LEDs than those made with different compounds, and so can operate at lower power.

When the proper voltage is applied to the junction, it emits light with a peak wavelength of 365 nanometers, which falls squarely in the ultraviolet range. The group produced and tested more than 40 of these LEDs; all showed very similar emission properties.

They also displayed excellent thermal stability-withstanding temperatures up to 750 degrees Celsius-and operational stability, showing no signs of deterioration even after two continuous hours of operation at room temperature. These properties indicate that this LED production method yields reliable, stable devices. The researchers say their method could be used to fabricate other nanowire structures as well as applications requiring a large area of nanoscale light sources.

A. Motayed, A. Davydov, M. He, S. N. Mohammed and J. Melngailis. 365 nm operation of n-nanowire/p-gallium nitride homojunction light emitting diodes. Applied Physics Letters 90, 183120 (2007)

Related Links
National Institute of Standards and Technology (NIST)
Powering The World in the 21st Century at Energy-Daily.com



Memory Foam Mattress Review
Newsletters :: SpaceDaily :: SpaceWar :: TerraDaily :: Energy Daily
XML Feeds :: Space News :: Earth News :: War News :: Solar Energy News


California Eco-Homes Offer Glimpse Of Lunar Future
Hesperia (AFP) California, May 25, 2007
They are eco-friendly, cost next to nothing to build, and in Nader Khalili's dreams, they might one day be housing the first settlers on the Moon. On a sun-baked fringe of arid California desert that in places resembles a lunar landscape, Khalili, an Iranian-born architect who came to the United States in 1971, proudly surveys his cluster of ceramic, domed homes.







  • ATK Conducts Successful Test Firing Of Space Shuttle Reusable Solid Rocket Motor
  • Progress Being Made On Next US Man-Rated Spacecraft
  • Airborne Systems Selected To Design Parachutes For SpaceX Rocket
  • Team America Rocketry Challenge Crowns New Champion

  • Arianespace Maintains Launch Campaign Pace As Another Ariane 5 GEO Truck Takes Form
  • Microgravity Enterprises Launches Commercial Payload From New Mexico Spaceport
  • Energia Posts 220 Percent Rise In 2006 Net Profit
  • Russia And ESA Sign Contract For Four Soyuz Launches From Kourou

  • US Shuttle Atlantis Back On Launch Pad
  • Atlantis Is Go For Rollout
  • Shuttle Atlantis To Hit Launchpad Next Week
  • No Launch Delay After Train With Shuttle Booster Derails In US

  • Expedition 15 Prepares For Upcoming Spacewalks
  • Station Crew Unpack Progress 25
  • Another Russian Automated Space Truck Docks At Space Station
  • ISS Crew Size Could Be Doubled By 2009

  • Science Subcommittees Focus On Ensuring Health And Vitality Of NASA Workforce
  • Malaysian Astronauts Head To NASA For Training
  • Using History To Design The Future
  • Amid Turtles And Sharks, Astronauts Train For Lunar Mission

  • China Aims To Launch Moon Probe This Year
  • China Approves Five-Year Space Development plan
  • US Said To Block US-China Deal On Asian Satellite Operator
  • Space Peonies Blooming In Heze

  • Boeing Orbital Express Completes First Autonomous Free Flight And Capture
  • Robot Teams Handle Hazardous Jobs
  • Mr Roboto
  • Carnegie Mellon Unveils Internet-Controlled Robots Anyone Can Build

  • Opportunity Turns Up The Amps
  • Seeking Mars Survival Secrets
  • Mars Rover Spirit Unearths Surprise Evidence Of Wetter Past
  • Breathtaking Views Of Deuteronilus Mensae On Mars

  • The content herein, unless otherwise known to be public domain, are Copyright Space.TV Corporation. AFP and UPI Wire Stories are copyright Agence France-Presse and United Press International. ESA Portal Reports are copyright European Space Agency. All NASA sourced material is public domain. Additional copyrights may apply in whole or part to other bona fide parties. Advertising does not imply endorsement, agreement or approval of any opinions, statements or information provided by Space.TV Corp on any Web page published or hosted by Space.TV Corp. Privacy Statement