Route to Flexible Electronics made from Exotic Materials

MIT researchers have devised a way to grow single crystal GaN thin film on a GaN substrate through two-dimensional materials. The GaN thin film is then exfoliated by a flexible substrate, showing the rainbow color that comes from thin film interference. This technology will pave the way to flexible electronics and the reuse of the wafers. Credit: Wei Kong and Kuan Qiao; Creative Commons Attribution Non-Commercial No Derivatives license

MIT researchers have devised a way to grow single crystal GaN thin film on a GaN substrate through two-dimensional materials. The GaN thin film is then exfoliated by a flexible substrate, showing the rainbow color that comes from thin film interference. This technology will pave the way to flexible electronics and the reuse of the wafers.
Credit: Wei Kong and Kuan Qiao; Creative Commons Attribution Non-Commercial No Derivatives license

Cost-effective method produces semiconducting films from materials that outperform silicon. MIT engineers have developed a technique to fabricate ultrathin semiconducting films made from a host of exotic materials other than silicon...

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When is a Nova not a Nova? When a White Dwarf and a Brown Dwarf Collide

This object is possibly the oldest of its kind ever catalogued: the hourglass-shaped remnant named CK Vulpeculae. Credit: ALMA (ESO/NAOJ/NRAO)/S. P. S. Eyres (link to DOI: 10.1093/mnras/sty2554 below)

This object is possibly the oldest of its kind ever catalogued: the hourglass-shaped remnant named CK Vulpeculae.
Credit: ALMA (ESO/NAOJ/NRAO)/S. P. S. Eyres (link to DOI: 10.1093/mnras/sty2554 below)

Astronomers have found for the first time that a white dwarf and a brown dwarf collided in a ‘blaze of glory’ that was witnessed on Earth in 1670. Researchers from Keele University have worked with an international team of astronomers to find for the first time that a white dwarf and a brown dwarf collided in a ‘blaze of glory’ that was witnessed on Earth in 1670.

Using the Atacama Large Millimeter/submillimeter Array (ALMA) in Chile, the international team of astronomers, including workers from the Universities of Keele, Manchester, South Wales, Arizona State, Minnesota, Ohio State, Warmia & ...

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New DNA Tool Predicts Height, shows promise for serious illness assessment

A new tool accurately predicts height. Credit: © Rido / Fotolia

A new tool accurately predicts height.
Credit: © Rido / Fotolia

A new DNA tool created by Michigan State University can accurately predict people’s height, and more importantly, could potentially assess their risk for serious illnesses, such as heart disease and cancer.

For the first time, the tool, or algorithm, builds predictors for human traits such as height, bone density and even the level of education a person might achieve, purely based on one’s genome. But the applications may not stop there.

“While we have validated this tool for these three outcomes, we can now apply this method to predict other complex traits related to health risks such as heart disease, diabetes and breast cancer,” said Stephen Hsu, lead investigator of the study and vice president for research and graduate st...

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New method measures Single Molecules from Nanoliter of Blood in Real Time

A nanopore device can contain different binding proteins. Once inside the pore, these proteins act as transducers to identify specific small molecules in a sample of body fluid.
Credit
Giovanni Maglia, University of Groningen

Scientists have designed a nanopore system that is capable of measuring different metabolites simultaneously in a variety of biological fluids, all in a matter of seconds. The electrical output signal is easily integrated into electronic devices for home diagnostics.

Measuring many metabolites or drugs in the body is complicated and time-consuming, and real-time monitoring is not usually possible. The ionic currents that pass through individual nanopores are emerging as a promising alternative to standard biochemical analysis...

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