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Stretchable silicon could be next wave in electronics
Researchers at the University of Illinois at Urbana-Champaign have developed a fully stretchable form of single-crystal silicon with micron-sized, wave-like geometries that can be used to build high-performance electronic devices on rubber substrates.   view more (2005-12-16)

Rice researchers gain new insight into nanoscale optics
New research from Rice University has demonstrated an important analogy between electronics and optics that will enable light waves to be coupled efficiently to nanoscale structures and devices.   view more (2005-09-15)

The inside dope
Often, things can be improved by a little 'contamination.' Steel, for example is iron with a bit of carbon mixed in. To produce materials for modern electronics, small amounts of impurities are introduced into silicon - a process called doping.   view more (2007-07-27)

A Fresh Spin in Quantum Physics: The 'Spin Triplet' Supercurrent
For the first time, scientists have created a "spin triplet" supercurrent through a ferromagnet over a long distance.   view more (2006-02-16)

Chemical Could Revolutionize Polymer Fuel Cells
Heat has always been a problem for fuel cells. There's usually either too much (ceramic fuel cells) for certain portable uses, such as automobiles or electronics, or too little (polymer fuel cells) to be efficient.   view more (2005-08-25)

Plenty of nothing: A hole new quantum spin
Electronic devices are always shrinking in size but it's hard to imagine anything beating what researchers at the University of New South Wales have created: a tiny wire that doesn't even use electrons to carry a current.   view more (2006-07-26)

New microchip design could be the key to expanding mobile phone memory
Mobile phones could one day have the memory capacity of a desktop computer thanks to a microchip that mimics the functioning of the brain, scientists report today (9 September) in the journal Science.   view more (2005-09-09)

Silicon-germanium microchips may herald new applications from radar to space exploration
Georgia Tech scientists and engineers are pursuing the dictum that "smaller is better" to develop a new breed of highly-integrated silicon-based microchips capable of operating in ultra-sophisticated radar systems - and in new generations of NASA spacecraft.   view more (2005-12-13)

Nano surfaces could slash cost of solar energy
Nanotechnologies which can artificially change the optical properties of materials to allow light to be trapped in solar cells could greatly reduce the cost of solar energy.   view more (2005-02-03)

Sophisticated ESA space weather tool under development
If a satellite encounters high-energy particles or other 'space weather' phenomena before ground controllers can take action, on-board electronics could be disrupted, scientific instruments damaged and, in very rare and extreme cases, spacecraft may even be lost.   view more (2007-02-05)

Nanoscientists Describe Electron Movement through Molecules
Molecular electronics is the ultimate miniaturization of electronics. In this area of research, scientists have been studying the movement of electrons through individual molecules in an effort to understand how they might control and use the process in new technologies.   view more (2005-09-30)

Mars Explorers Wanted - No Experience Necessary
The University of Kent's Electronics Department is offering school pupils an opportunity to learn about robotics and the design of intelligent systems in a three-day residential summer school to be held from 2-4 August. Walking with Robots will bring together 80 young people on the Canterbury campus to meet and learn from leaders of the robotics... view more... (2003-05-13)

'Nano skins' show promise as flexible electronic devices
A team of researchers has developed a new process to make flexible, conducting 'nano skins' for a variety of applications, from electronic paper to sensors for detecting chemical and biological agents.   view more (2006-03-02)

Purdue simulation to help merge molecules with silicon electronics
Engineers at Purdue University have created a nanotech simulation tool that shows how current flows between silicon atoms and individual molecules to help researchers design "molecular electronic" devices for future computers and advanced sensors.   view more (2005-08-18)

'Custom' nanoparticles could improve cancer diagnosis and treatment
Researchers have developed "custom" nanoparticles that show promise of providing a more targeted and effective delivery of anticancer drugs than conventional medications or any of the earlier attempts to fight cancer with nanoparticles.   view more (2006-03-27)

Ohio University Researchers Create Improved Magnetic-Semiconductor Sandwich
Researchers at Ohio University have created an improved magnetic semiconductor that solves a problem spintronics scientists have been investigating for years.    view more (2006-10-03)

Researchers develop foundation for circuitry and devices based on graphite
Graphite, the material that gives pencils their marking ability, could be the basis for a new class of nanometer-scale electronic devices that have the attractive properties of carbon nanotubes - but could be produced using established microelectronics manufacturing techniques.   view more (2006-03-15)

Georgia Tech/IBM team demonstrates first 500 GHz silicon-germanium transistors
A research team from IBM and the Georgia Institute of Technology has demonstrated the first silicon-germanium transistor able to operate at frequencies above 500 GHz.   view more (2006-06-20)

Magnets in a spin bath
Is quantum mechanics relevant to everyday life? Latest scientific evidence suggests that it is. A paper published in Science based on research from the Paul Scherrer Institute (PSI) in Switzerland and others, reports how quantum computers behave as if they are isolated devices. The extent to which they do this can be regulated by the environment... view more... (2005-04-15)

MIT material puts new spin on electronics
Researchers at MIT's Francis Bitter Magnet Lab have developed a novel magnetic semiconductor that may greatly increase the computing power and flexibility of future electronic devices while dramatically reducing their power consumption.   view more (2006-05-25)
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