New material for nanoscale computer chips

August 17, 2009 New material for nanoscale computer chips

Enlarge

Researchers cross organic and non-organic nanowires like Mikado sticks and thereby make nanoscale prototype computer electronics. Credit: Asmus Dohn

Nanochemists from the Chinese Academy of Sciences and Nano-Science Center, Department of Chemistry at University of Copenhagen have developed nanoscale electric contacts out of organic and inorganic nanowires. In the contact they have crossed the wires like Mikado sticks and coupled several contacts together in an electric circuit. In this way they have produced prototype computer electronics on the nanoscale.

Alternative to silicon computers

Today the foundation of our computers, mobile phones and other electronic apparatus is silicon transistors. A transistor is in principal an on- and off- contact and there are millions of tiny transistors on every computer chip. However, we are reaching the limit for how small we can make transistors out of silicon.

We already use various organic materials in, for example, flat screens, such as (). The new results show how small and advanced devices made of organic materials can become.

Thomas Bjørnholm, Director of the Nano-Science Center, Department of Chemistry at University of Copenhagen explains:

"We have succeeded in placing several consisting of together on a nano device. It is a first step towards realisation of future electronic circuitry based on organic materials - a possible substitute for today's silicon-based technologies. This offers the possibility of making computers in different ways in the future."

Danish-Chinese nanoelectronics

The researchers have used organic nanowires combined with the tin oxide nanowires in a so-called hybrid circuit. As in a Mikado game, the nanowires cross in a device consisting of 4-6 active transistor moieties. The devices have a low operational current, high mobility and good stability and that is essential in order for the material to be able to compete with silicon.

Professor Wenping Hu, Chinese Academy of Sciences is excited over the results:

"This work is the first significant result of our collaboration with the researchers from the Nano-Science Center. It is a good starting point for our new Danish-Chinese research centre for molecular nano-electronics and it underlines the fact that we can complement each other and that together we can achieve exciting and important results."

More information: Advanced Materials, published online 12 Aug 2009

Source: University of Copenhagen


print this article email this article download pdf blog this article bookmark this article     Stumble it Digg this share on Facebook retweet share on Reddit add to delicious
Rate this story - 5 /5 (4 votes)

Rank Filter

Move the slider to adjust rank threshold, so that you can hide some of the comments.


Display comments: newest first


August 17, 2009 all stories

Comments: 2

5 /5 (4 votes)
  • Stumble this up

  • Digg this

  • share this

  • hide
  • Related Stories

  • Nano World: Chemical sensing transistors
    created Jul 22, 2006 | popularity not rated yet | comments 0
  • New design developed for silicon nanowire transistors
    created Jul 01, 2005 | popularity not rated yet | comments 0
  • Nano World: Superior nanowire transistors
    created May 30, 2006 | popularity not rated yet | comments 0
  • New research could lead to 'invisible' electronics
    created Dec 22, 2006 | popularity not rated yet | comments 0
  • Integration of semiconductor and superconductor electronics on the nanoscale
    created Jul 08, 2005 | popularity not rated yet | comments 0



  • hide
  • Relevant PhysicsForums posts

Other News

Nanoparticles used in common household items caused genetic damage in mice

Nanotechnology / Bio & Medicine

created Nov 16, 2009 | popularity 4.7 / 5 (22) | comments 11

Titanium dioxide (TiO2) nanoparticles, found in everything from cosmetics to sunscreen to paint to vitamins, caused systemic genetic damage in mice, according to a comprehensive study conducted by researchers at UCLA's Jonsson ...


Using superconducting probes to get a picture of what it's like inside CNTs

Nanotechnology / Nanophysics

created Nov 20, 2009 | popularity 4.9 / 5 (7) | comments 0

(PhysOrg.com) -- "Carbon nanotubes are exciting for fundamental physics, and for potential technological applications," Nadya Mason tells PhysOrg.com. "However, we are generally limited in the way that we can study them. ...


Nanotube defects equal better energy and storage systems

Nanotube defects equal better energy and storage systems

Nanotechnology / Nanomaterials

created Nov 19, 2009 | popularity 4.4 / 5 (9) | comments 2

(PhysOrg.com) -- Most people would like to be able to charge their cell phones and other personal electronics quickly and not too often. A recent discovery made by UC San Diego engineers could lead to carbon ...


When It Comes to Drug Delivery, Size Matters

Nanotechnology / Bio & Medicine

created Nov 20, 2009 | popularity 5 / 5 (1) | comments 0

(PhysOrg.com) -- One of the great promises of nanotechnologies lies in its ability to create drug-containing nanoparticles decorated with targeting molecules that recognize and bind to cancer cells, providing drug delivery ...


New study confirms exotic electric properties of graphene

New study confirms exotic electric properties of graphene

Nanotechnology / Nanomaterials

created Nov 17, 2009 | popularity 4.8 / 5 (23) | comments 1

(PhysOrg.com) -- First, it was the soccer-ball-shaped molecules dubbed buckyballs. Then it was the cylindrically shaped nanotubes. Now, the hottest new material in physics and nanotechnology is graphene: ...