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Chemistry World June 20, 2010 Jon Cartwright |
Carbon nanotubes boost battery power Researchers in the US claim to have created electrodes from carbon nanotubes that can make lithium-ion batteries some ten times more powerful than conventional models. |
Chemistry World December 21, 2015 Tim Wogan |
Doped electrodes cram charge into supercapacitors A new supercapacitor electrode material has been created by Chinese researchers that can store much more energy than conventional supercapacitors. |
Chemistry World May 13, 2011 Laura Howes |
New carbon material boosts supercapacitors A new carbon based material for supercapacitor electrodes could allow them to store the same amount of energy as a lead-acid battery but with much faster charge times. |
Chemistry World September 25, 2008 Simon Hadlington |
Graphene racks up the charge Researchers in the US have used graphene, sheets of carbon that are just one atom thick, to improve the performance of energy-storage devices which could supersede batteries in electric cars. |
Technology Research News March 23, 2005 |
Nanotubes juice super batteries A relatively simple and inexpensive way to form a new type of thin film supercapacitor from multi-wall carbon nanotubes. |
Chemistry World June 27, 2014 Dannielle Whittaker |
Electrical component hitches a ride with mechanical support A new composite material that can simultaneously withstand mechanical loads and store electrical energy has been created by scientists in the UK and Belgium. |
Chemistry World January 18, 2011 Philippa Ross |
Pig power for batteries Scientists in China have developed an electrode for lithium-sulfur batteries using pig bones as a cheap and renewable carbon source. |
IEEE Spectrum November 2007 Joel Schindall |
The Charge of the Ultra - Capacitors Nanotechnology takes energy storage beyond batteries. |
Chemistry World May 17, 2009 Jon Cartwright |
Carbon electrodes help form high capacity lithium-sulfur batteries Chemists in Canada have used a carbon framework to form an electrode in lithium-sulfur batteries that results in charge capacities several times greater than standard lithium ion batteries. |
Chemistry World November 25, 2008 Lewis Brindley |
Silicon for better batteries A new silicon-based anode could greatly increase the storage capacity of lithium ion batteries - boosting the runtimes of devices such as laptops and mobile phones by up to seven times |
Chemistry World February 15, 2010 Andy Extance |
Reversing attraction shrinks car batteries Transforming the most important attractive force acting between molecules into a repulsive one could enable US scientists to nearly halve the size of lithium-ion batteries. |
Technology Research News December 1, 2004 Kimberly Patch |
Solar Cell Doubles as Battery Scientists have designed a single, compact device that can both convert solar energy to electricity and store the electricity. |
Chemistry World March 15, 2012 Jon Cartwright |
DVD player burns graphene to disc Chemists in the US have used a standard DVD player to reduce films of graphite oxide to graphene. |
Chemistry World August 14, 2007 Lewis Brindley |
Origami Batteries Unfurled Scientists in the US have developed ultra-thin batteries by integrating carbon nanotubes into the structure of paper. |
Chemistry World August 28, 2012 Jennifer Newton |
Skeleton and skin strategy improves supercapacitor The ultrathin supercapacitor could have potential uses in lightweight and flexible storage devices for portable electronic devices. |
Chemistry World May 2, 2007 Richard Van Noorden |
Ionic Liquids' Etch-A-Sketch Surprise UK chemists have discovered how to draw and erase pictures on the surfaces of ionic liquids. |
Chemistry World October 15, 2014 Jennifer Newton |
Liming Dai: Integrating nanochemistry into the macroscopic world Liming Dai's expertise lies across the synthesis, chemical modification and device fabrication of conjugated polymers and carbon nanomaterials for energy-related and biomedical applications. |
Chemistry World August 21, 2013 Yuandi Li |
Temperature responsive polymer stops overheating problem Researchers in China have designed a smart supercapacitor that reversibly shuts down when it gets too hot. |
Chemistry World November 13, 2015 Kira Welter |
First permanently porous liquid created Liquids with permanent porosity were created by combining a functionalized organic cage molecule and a bulky solvent |
Chemistry World April 2, 2009 Jon Cartwright |
Biological battery powers up Scientists in the US have created a rechargeable 'lithium ion' battery with the help of a genetically programmed virus that acts as a scaffold for highly conductive electrodes. |
InternetNews August 15, 2007 Andy Patrizio |
A Mighty Wind's a Blowin' at Purdue Researchers at Purdue University have developed a new method of semiconductor cooling that could improve the cooling rate inside computers by as much as 250 percent. |
IEEE Spectrum March 2006 J. R. Minkel |
Quantum Leap For Quantum Computing The most promising technology for constructing an ultrapowerful quantum computer is the ion trap, a nest of electrodes that holds ions in midair. Researchers have now built the first such ion-trap chips. |
Chemistry World September 26, 2011 Simon Hadlington |
Electric vehicles set to charge ahead 'There is a big effort to improve lithium ion batteries for electric vehicles and largely the outcome will be dictated by how the consumer reacts,' says Daniel Abraham, a battery expert at the Argonne National Laboratory in the US. |
Chemistry World December 14, 2010 Phillip Broadwith |
Speeding up electrons in solar cells Swiss and Chinese scientists have developed a new way of making the porous TiO2 electrode for solid state dye-sensitised solar cells. |
Chemistry World December 9, 2010 Mike Brown |
Lithiation through the lens Scientists have generated high resolution images of lithium ions being deposited on a single nanowire anode, revealing how the material grows and flexes in response to charge. |
Chemistry World February 5, 2009 Simon Hadlington |
Carbon nanotube catalysts 'better than platinum' Researchers in the US have developed a novel catalyst based on carbon nanotubes for the electrochemical reduction of oxygen. |
Chemistry World December 15, 2014 Dannielle Whittaker |
From nutshell to supercapattery Scientists in Canada have created a hybrid sodium ion capacitor (NIC) from peanut shells in a pioneering study bridging the gap between conventional ion batteries and supercapacitors. |
Chemistry World January 28, 2010 Lewis Brindley |
Better batteries with nano-cables Nano-sized cables made with titanium dioxide-coated carbon nanotubes could hold the key to developing new high-capacity batteries, report chemists in Germany and China. |
Technology Research News January 29, 2003 Kimberly Patch |
Tiny hole guides atoms against tide Researchers in Poland have made a synthetic device that uses an electrical field and an extremely small, conical pore in a thin film of material to coax potassium ions through the artificial membrane against their electrochemical potential. |
Chemistry World August 8, 2010 Lewis Brindley |
Wet batteries power up The performance of water-based lithium-ion batteries has been greatly boosted by removing oxygen from the power cells, report Chinese researchers. |
Chemistry World May 22, 2011 Simon Hadlington |
Materials 'sandwich' superconducts Scientists in Japan have made a 'superconducting sandwich' from two materials are not superconductors in isolation. The technique could be used to make electronic circuits with extremely low power consumption, the researchers suggest. |
Technology Research News June 16, 2004 |
Silicon Nanowires Grown in Place Researchers have found a way to grow nanowires between pairs of metal electrodes deposited on silicon wafers. |
Chemistry World June 10, 2012 Jon Cartwright |
Electrode dip to freshen up saltwater Producing freshwater from brackish water could be cheaper and easier than previously thought, according to researchers who have developed a new technique for desalination. |
Chemistry World December 2, 2013 Stephen McCarthy |
Scorched hair makes supercapacitors greener Researchers in China have used human hair to make a vital component of energy-storage devices. The discovery could lead to more efficient and environmentally-friendly replacements for traditional batteries. |
Chemistry World July 3, 2012 Philip Robinson |
Triazine boosts polymer energy storage A team of scientists from Germany and Japan have presented a new principle for storing energy in lithium ion batteries using a porous polymer framework. This could give these new batteries double the energy storage of conventional lithium ion batteries. |
Chemistry World November 27, 2014 Katrina Kramer |
Conductive clay rolled out to store energy A conductive clay made by US researchers might provide a novel way of storing energy that could, one day, surpass batteries. |
Technology Research News December 15, 2004 |
DNA Makes Nanotube Transistors Researchers have harnessed the self-assembly abilities of DNA to construct field-effect transistors from carbon nanotubes. |
Technology Research News March 9, 2005 |
Nanotubes Boost Molecular Devices Researchers have constructed an extremely small transistor from a pair of single-walled carbon nanotubes and organic molecules. The tiny transistor could eventually be used in ultra-low-power electronics. |
Chemistry World January 26, 2015 Sage Bowser |
Straightening out capacitance measurements Researchers in the UK have designed a simple and inexpensive circuit that can linearize the charge -- discharge behavior of a capacitor. |
Chemistry World May 10, 2007 Simon Hadlington |
New Electrode Material for High-Capacity Lithium Batteries US researchers presented details of a new electrode material for rechargeable batteries which, they claim, can store almost twice as much charge as conventional electrodes. |
Technology Research News September 22, 2004 Kimberly Patch |
Fuel Cell Converts Waste to Power One problem with fuel cells is that they produce carbon monoxide, which can gum up the works. Researchers have found a way to use the carbon monoxide to produce more energy in a reaction that can take place at room temperature. |
Technology Research News March 26, 2003 |
On-chip battery debuts Researchers from Hosei University in Japan have taken a big step toward giving nano devices and biochips onboard power supplies. |
IEEE Spectrum April 2009 Monica Heger |
Flexible, Printable Supercapacitor Built Printable electronics now have a printable energy-storage option |
Chemistry World April 7, 2011 Carl Saxton |
Power sources get flexible US scientists have designed an ultra-thin, flexible battery with the highest charge capacity reported for thin film cells. The battery can also be charged at a lower voltage than lithium ion batteries. |
Chemistry World October 20, 2011 Rebecca Brodie |
New Power for Smart Garments Scientists in the US have taken the first steps towards designing a flexible and lightweight fabric that can act as a power supply for smart garments. |
Military & Aerospace Electronics November 2007 John McHale |
Purdue Researchers Demonstrate New Chip-Cooling Technology Researchers are taking a new approach with a new technology that uses tiny ionic wind engines that they say might dramatically improve computer chip cooling-a constant challenge for military and commercial electronics designers. |
Technology Research News October 6, 2004 |
Nanotube diode reverses itself A minuscule p-n junction diode that could be used as a field-effect transistor or a light-emitting diode is a step forward in the push to make nanoscale electronic components. |
Chemistry World April 10, 2014 Tim Wogan |
Nanocrystalline copper turns CO into fuel A new type of nanocrystalline copper electrode that catalyses the electrochemical conversion of carbon monoxide to alcohols has been demonstrated by researchers in the US. |
Technology Research News November 3, 2004 |
Coated Nanotubes Record Light Researchers have combined minuscule carbon nanotube transistors and photosensitive polymer to make a fast optoelectronic memory device that promises to speed digital photography and provide high-density data storage. |
Chemistry World February 23, 2012 Russell Johnson |
Powering up fuel cells A hydrogen fuel cell that uses carbon nanotubes to increase the amount of electrocatalyst attached to electrodes has been designed by UK scientists. |