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Nanotechnology aids in cooling electrons without external sources

A team of researchers has discovered a way to cool electrons to -228 °C without external means and at room temperature, …

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Layered graphene sandwich for next generation electronics

Sandwiching layers of graphene with white graphene could produce designer materials capable of creating high-frequency electronic devices, University of Manchester scientists have found.

Sandwiching layers of graphene with white graphene could produce designer materials capable of creating high-frequency e…

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A new, tunable device for spintronics

An international team of scientists including physicist Jairo Sinova from the University of Mainz realises a tunable spin-charge converter made of GaAs

Researchers including physicist Jairo Sinova from Mainz University open up new approach in searching and engineering spi…

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Copper shines as flexible conductor

Making such concepts affordable enough for general use remains a challenge but a new way of working with copper nanowire…

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Graphene’s multi-coloured butterflies

Combining black and white graphene can change the electronic properties of the one-atom thick materials, University of Manchester researchers have found.

Combining black and white graphene can change the electronic properties of the one-atom thick materials, University of M…

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Ultra-Thinning of 300-mm Wafer Down to 4-micrometer Thickness

Proven by DRAM, applicable for the next Three Dimensional Large Scale Memories

Researchers has developed technology for the ultra-thinning process down to 4 micrometer using 300mm wafer implemented 2…

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New graphene framework bridges gap between traditional capacitors, batteries

The material, called a holey graphene framework, has a three-dimensional, perforated structure characterized by tiny

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Nanoengineers Develop Basis for Electronics That Stretch at the Molecular Level

Nanoengineers at the University of California, San Diego are asking what might be possible if semiconductor materials we…

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Magnetic topological insulators developed at UCLA are 1,000 times more energy-efficient for switching

Topological insulators are an emerging class of materials that act as both insulators and conductors, and could potentia…

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UNIVERSITY OF TWENTE DEVELOPS ANTENNA CAPABLE OF REMEDYING MALFUNCTION

Researchers from the University of Twente have developed an antenna that can put an end to a malfunction. Developing suc…

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UVM Startup Can Power Trillions of Sensors in Everyday Objects

UVM alumnus Robert Andosca has made the idea of battery-powered sensors all but obsolete with a tiny vibration energy sc…

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Technology using microwave heating may impact electronics manufacture

Engineers at Oregon State University have successfully shown that a continuous flow reactor can produce high-quality nan…

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Alleviating Overcapacity, Specially Developed Smartphone Utilizing TV Whitespace with LTE Technology

Invention of a pocket-sized and lightweight smartphone with LTE technology for efficient frequency utilization

The National Institute of Information and Communications Technology has succeeded in developing a specially made smartph…

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GE Brings Supercomputing Performance to Harsh Environments

CRS 48.5 uses advanced cooling technology to bring data center performance to the battlefield. Rugged subsystem can deli…

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Developing a 'Gold Standard' for Hall Resistance

PML researchers have developed a novel method of fabricating graphene-based microdevices that may hasten the arrival of …

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Printoo brings novel Printed Electronics technologies closer to the mainstream

Printoo is an Arduino™-compatible platform that brings previously unavailable printed, low power, and flexible electroni…

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Silicon-Germanium Chip Sets New Speed Record

A research collaboration consisting of IHP-Innovations for High Performance Microelectronics in Germany and the Georgia …

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Smart HMI Stick opens up new simpler ways to wirelessly control machines with tablets and smartphones

Applications include industrial machinery, heating systems, air conditioning plants, production equipment, laboratory eq…

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Widest band amplifier ever at 235 GHz – opens door to ultrafast broadband

An exciting collaboration between University College London, UCL, and Chalmers University of Technology has led to a world breakthrough in wide band amplifier circuit design.

An exciting research collaboration between UCL and Chalmers has resulted in the design and testing of the widest band am…

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UNL-Stanford research advances organic semiconductors for electronics

The next wave of electronics, using organic thin film transistors instead of silicon, is gaining momentum with new resea…

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