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CHIP TECH
Ultra-flexible chip can be wrapped around a hair
by Staff Writers
Paris (AFP) Jan 07, 2014


Scientists in Switzerland said Tuesday they can create electronic chips so flexible they can be wrapped around a human hair.

The technique entails building an electronic circuit on top of a sandwich of polyvinyl layers perched on a hard base.

The wafer is then placed in water, which dissolves two of the polyvinyl layers and causes the base to be released, sinking to the bottom of the lab dish.

What remains is a circuit embedded on a light, transparent non-soluble polymer film called parylene that is just one micrometre, or a millionth of a metre, thick.

The transistors continue to work even when wrapped around a human hair, which is about 50 micrometres thick, according to the research published in the journal Nature Communications.

The ultra-bendable chip may have medical uses, and has already been tested on an artificial eye in the lab.

It was added to a contact lens to provide a monitor for glaucoma, in which pressure builds up dangerously in the eyeball, said the team.

The invention also has many other potential outlets, from flexible solar cells to wearable bio-sensors, they said.

The electronics "can be transferred on any object, surface and on biological tissues like human skin and plant leaves," according to the study led by Giovanni Salvatore at the Swiss Federal Institute of Technology in Zurich (ETZ).

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Related Links
Computer Chip Architecture, Technology and Manufacture
Nano Technology News From SpaceMart.com






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Exfoliation method paves way for 2D materials to be used in printable photonics and electronics
Singapore (SPX) Jan 06, 2014
A team of scientists from the National University of Singapore (NUS) has successfully developed a method to chemically exfoliate molybdenum disulfide crystals, a class of chalcogenide compounds, into high quality monolayer flakes, with higher yield and larger flake size than current methods. The exfoliated flakes can be made into a printable solution, which can be applied in printable photonics ... read more


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