Category Technology/Electronics

Researchers have made Linden Wood Transparent, useful for building materials, light-based electronics

Schematic to display the mesoporous structures in wood where the cell walls are aligned vertically. After lignin is removed and the index-matching polymer is filled in, the thick (up to centimeter) piece of wood becomes a highly transparent structural material. b) Pictures to show that wood becomes highly transparent after the two steps.

Schematic to display the mesoporous structures in wood where the cell walls are aligned vertically. After lignin is removed and the index-matching polymer is filled in, the thick (up to centimeter) piece of wood becomes a highly transparent structural material. b) Pictures to show that wood becomes highly transparent after the two steps.

Materials scientist Liangbing Hu and his team at the University of Maryland, College Park, have removed the molecule in wood, lignin, that makes it rigid and dark in color. They left behind the colorless cellulose cell structures, filled them with epoxy, and came up with a version of the wood that is mostly see-thru. “It can be used in automobiles when the wood is made both transparent and high strength.” said Dr. Mingwei Zhu...

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Engineers create a better way to Boil Water, with Industrial, Electronics Applications

Researchers at Oregon State University use new technology to control the formation and release of bubbles. Here that technology is illustrated with the letters "OSU" printed on a substrate. Credit: Image courtesy of Oregon State University

Researchers at Oregon State University use new technology to control the formation and release of bubbles. Here that technology is illustrated with the letters “OSU” printed on a substrate. Credit: Image courtesy of Oregon State University

Engineers at Oregon State University have found a new way to induce and control boiling bubble formation, that may allow everything from industrial-sized boilers to advanced electronics to work better and last longer. The concept could be useful to either to boil water and create steam more readily, like in a boiler or a clothing iron; or with a product such as an electronics device to release heat more readily while working at a cooler temperature.

“One of the key limitations for electronic devices is the heat they generate, and something that helps dis...

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Physicists Explore Superconductivity at the 2D limit

Atomically thin TaS2 devices.

Atomically thin TaS2 devices. (a) Ball and stick model of the crystal structure of the 2H polytype of TaS2. The dashed prism encloses the content of a single unit cell and the metal coordination geometry is highlighted by the red polyhedron. (b) Atomic force microscopy image of two devices fabricated on a 3.5-nm 2H-TaS2 flake. The scale bar is 4 μm in length. The full colour scale of the topograph corresponds to a height of 100 nm. (c) Line profile of the flake taken at the location of the white dotted line in b.

Uni of Valencia researchers show superconducting state can be maintained even when the material in question is reduced from 3 to 2 dimensions, making the efficiency gains needed for technologies like those underlying the frictionless train possible...

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Better Bone Replacement: 3D Printed Bone with just the Right Mix of Ingredients

To make a good framework for filling in missing bone, mix at least 30% pulverized natural bone with some special human-made plastic and create the needed shape with a 3D printer. That’s the recipe for success reported by researchers at The Johns Hopkins University. Each year birth defects, trauma or surgery leave an estimated 200,000 people in need of replacement bones in the head or face. Historically, the best treatment required surgeons to remove part of a patient’s fibula (a leg bone that doesn’t bear much weight), cut it into the general shape needed and implant it in the right location. But the procedure not only creates leg trauma but also falls short because the relatively straight fibula can’t be shaped to fit the subtle curves of the face very well.

Three-Dimensional Printing of Bone Extracellular Matrix for Craniofacial Regeneration

Three-Dimensional Printing of...

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