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Reactive Reports Issue 57 David Bradley |
Smart Materials Self Repair Dumb materials succumb to rust, but smart materials might be able to heal themselves, thanks to researchers in Europe. |
IEEE Spectrum September 2008 Monica Heger |
At Long Last, Plastic Electronics Goes Commercial Plastic Logic begins production today, racing with Polymer Vision to get flexible e-readers into consumers' hands |
Chemistry World December 4, 2008 Lewis Brindley |
Nacre-inspired composite is toughest ever ceramic A hybrid composite inspired by the structures of bone and mother-of-pearl is the toughest ceramic-based material ever made, say US scientists. |
Technology Research News July 16, 2003 Kimberly Patch |
Electricity shapes nano plastic Plastic is a popular material for electronics these days because it's light and flexible. But today's chipmaking processes tend toward hard crystals, not soft polymers. A method that yields microscopic plastic structures could help, and it's based on a readily-available resource -- electricity. |
IEEE Spectrum October 2005 Stephen Forrest |
The Dawn of Organic Electronics Organic semiconductors are strong candidates for creating flexible, full-color displays and circuits on plastic. |
IEEE Spectrum February 2013 Andrew J. Steckl |
Electronics on Paper Paper electronics could pave the way to a new generation of cheap, flexible gadgets |
BusinessWeek May 10, 2004 Otis Por |
Just Two Words: Plastic Chips They can endow just about anything with computer smarts -- and they'll be cheap |
Chemistry World September 2, 2014 Jon Cartwright |
Flexible solar cell woven into fabric There could soon be a way to power wearable electronics indefinitely, now that scientists in China have developed a solar cell 'textile' that could be woven into clothes. |
Technology Research News December 17, 2003 Eric Smalley |
Microfluidics make flat screens A new method for making big, cheap flat screen displays is a bit like making muffins. Pour liquid polymer into microfluidic channels aligned above an array of electrodes, let cure, and you have organic thin film transistors. |
Technology Research News December 3, 2003 |
Layers promise cheap storage Princeton University and Hewlett-Packard Laboratories researchers have constructed a very low cost data storage device from plastic and silicon that can potentially store one hundred megabits of information per square centimeter. |
Technology Research News April 9, 2003 Kimberly Patch |
Painted LEDs make screen Spread it on a surface, shine tiny spots of ultraviolet light on it, and voila, a certain type of plastic turns into a full-color, high-resolution, flexible flat-screen display. The simple process could make computer screens much cheaper. |
Technology Research News December 3, 2003 |
Carbon boosts plastic circuits Researchers from the California Institute of Technology have devised an inexpensive way to add better-conducting organic source and drain electrodes to organic thin-film transistors. |
Chemistry World November 18, 2014 Matthew Gunther |
Hollow oxide can take the heat Researchers have developed a twin-layer insulating coating made up of hollow aluminum oxide spheres which could protect industrial parts, such as steam turbine components, from both heat and oxidation damage. |
IndustryWeek February 1, 2009 Jill Jusko |
A Tougher Ceramic Taking their cues from nature, scientists at Lawrence Berkeley National Laboratory say they have mimicked the structure of mother of pearl to create a tougher ceramic. |
Technology Research News September 22, 2004 |
Plastics Ease Nanotube Circuits Researchers have devised a way to make a random, self-assembled network of carbon nanotubes embedded in polymer that preserves the nanotubes' electrical conductivity and is suitable for thermal printing processes. |
Chemistry World May 3, 2011 James Urquhart |
Turning heat into electricity with polymers Swedish researchers have improved the thermoelectric efficiency of an organic conducting polymer by controlling the material's oxidation level, boosting the prospect of developing cheap, flexible and lightweight organic thermoelectric devices |
IEEE Spectrum March 2008 Chang & Subramian |
Electronic Noses Sniff Success E-noses will soon be ubiquitous, thanks to printed organic semiconductors. |
Scientific American October 2008 Steven Ashley |
Cool Polymers: Toward the Microwave Oven Version of the Refrigerator Getting a bigger chill out of polymers that respond to electric fields. |
Popular Mechanics May 2000 Thomas Klenck |
Concrete How it's made and how you use it. |
Technology Research News February 25, 2004 |
Nanotubes boost shape recovery Researchers have mixed carbon nanotubes with polymer to make a plastic that is good at springing back into shape when heated. The shape memory polymers could be used in practical applications in five years, according to the researchers. |
IEEE Spectrum January 2012 Neil Savage |
Electronic Cotton Circuits could be woven from conductive and semiconducting natural fibers |
Reactive Reports September 2005 David Bradley |
Nano Surprise A surprising mechanism by which polymers form nanocomposite particles could provide researchers with a new tool for controlling the growth of such materials. |
Technology Research News February 26, 2003 |
Alloy lowers fuel-cell cost Scientists from Lawrence Berkeley National Laboratory have found a way to make fuel cells that are potentially cheaper and easier to manufacture than previous prototypes. The method is a step toward making the relatively clean energy-generating technology commercially viable. |
Military & Aerospace Electronics November 2007 |
Wesgo/Duramic Products Offers MACOR Machinable Glass Ceramic This technical ceramic can be fabricated into complex shapes, and is widely used in aerospace, medical, welding, and other industries and applications with high-temperature, high-vacuum, and high-electrical-resistance requirements. |
IEEE Spectrum January 2008 Prachi Patel-Predd |
Sensitive Synthetic Skin in the Works for Prosthetic Arms Carbon nanotubes key to making synthetic skin that lets artificial limbs sense heat and touch. |
Chemistry World May 17, 2009 Simon Hadlington |
Non-stick approach to regular polymer vesicles UK researchers have devised a new method for making polymer vesicles |
Chemistry World May 16, 2014 Tim Wogan |
New thermoset plastics simple to recycle Thermosetting polymers that can be easily recycled have been developed by an international team of researchers. |
Chemistry World June 1, 2010 Simon Hadlington |
Structural order gained over conducting polymer Scientists in Canada and the US have shown how it is possible to assemble ordered arrays of short chains of a commercially important conducting polymer on a metal surface. |
Chemistry World July 29, 2013 Andy Extance |
First polymer LED that stays lit up when stretched and scrunched Researchers in Europe and Japan say that they have produced the first polymer organic light-emitting diodes that can be stretched while lit. |
Chemistry World December 4, 2007 Richard Van Noorden |
Polymer Chemistry Tackles Implant Concerns Advances in polymer chemistry could help resolve safety concerns surrounding body implants, such as stents to hold open clogged arteries, scientists heard at the Materials Research Society Fall meeting. |
Chemistry World February 28, 2006 Jon Evans |
Magnetic Appeal of Shape-Change Polymer Polymer scientists developed polymers that change shape in response to a magnetic field by incorporating magnetic iron(III)oxide nanoparticles into a shape-memory polyetherurethane compound known as TFX. |
Chemistry World February 27, 2015 Vicki Marshall |
Petrified beetles Scientists in Germany have successfully preserved delicate structural details in scarab beetles by using an ionic polymer to drive carbonization. |
Chemistry World February 3, 2014 Simon Hadlington |
Laser writing makes 'bone like' material Researchers in Germany have used 3D laser lithography to engineer polymer microstructures that mimic the lightweight yet strong properties of cellular materials like wood and bone. |
Chemistry World January 12, 2012 Simon Hadlington |
Composites Reinforced in 3D A method that uses magnetic fields to align tiny structural elements within a polymer matrix has been developed by scientists in Switzerland. |
Chemistry World November 4, 2014 Emma Stoye |
Pressure-sensitive coating makes swallowed batteries safer Scientists have developed a protective coating for button cell batteries that stops curious children that swallow them from being injured. |
Chemistry World June 30, 2011 Heather Montgomery |
Rust busting self-healing materials Scientists in Singapore have prepared a coating for metals that heals itself after being scratched to prevent corrosion of the metal underneath. |
Chemistry World August 14, 2008 Lewis Brindley |
Colorful Waterproofing for Anything Materials scientists in China have developed a simple process to add an extremely waterproof coating to a variety of materials. |
PC Magazine April 5, 2006 Sebastian Rupley |
Flexed Researchers have come up with a new polymer material that could usher bendable displays into widespread use. |
IEEE Spectrum May 2006 Samuel K. Moore |
Poky Plastic Perks Up Materials scientists have invented the first polymer semiconductor to perform almost as well as the type of silicon used to drive flat-panel displays. |
Chemistry World July 15, 2015 Aurora Walshe |
Fog-free film doesn't dare to glare Scientists in China have built a thin film that retains its antifogging properties even under an antireflective coating. |
Chemistry World August 17, 2010 Carol Stanier |
Wet weather coatings Ever wished that your waterproof jacket could actively remove water from the inside? Tong Lin at Deakin University, Australia, and his colleagues coated a porous polyester fabric on both sides with a mixture of titanium dioxide and organosilanes. |
Chemistry World January 11, 2016 Tim Wogan |
Ceramics made stronger with 3D printing A new method for 3D printing ceramic microlattices has been developed by researchers in the US. |
Chemistry World September 1, 2011 Laura Howes |
Green fire retardant swells to suppress flames Jamie Grunlan's team at the University of Texas A&M, US, has used layer by layer deposition to coat fabrics with a thin, environmentally benign, fire retardant layer of polymers. |