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Reactive Reports
Issue 33
David Bradley
The Miniature Rotarians Tiny interlocking wheels are the components of a miniscule molecular rotor designed and built by UK chemists. The submicroscopic invention offers a new motor-like component for those hoping to build nanotechnology from the bottom up. mark for My Articles similar articles
Chemistry World
January 4, 2007
Richard Van Noorden
Knighthood for Services to Chemistry Fraser Stoddart, director of the California NanoSystems Institute and professor of NanoSystems Sciences at the University of California, has been appointed a Knight Bachelor for his services to chemistry and molecular nanotechnology. mark for My Articles similar articles
Reactive Reports
October 2006
David Bradley
Amilra Prasanna "AP" de Silva An interview with the Queen's University of Belfast chemistry professor on his fascinating research into logical molecules. mark for My Articles similar articles
Chemistry World
August 29, 2014
Simon Hadlington
Rigid molecular wires make electrons fly Researchers in Germany and Japan have shown that a new type of organic molecular wire -- which is flat and rigid -- can transfer electrons at more than 800 times the speed of its conventional, flexible counterpart. mark for My Articles similar articles
Chemistry World
March 25, 2013
David Bradley
Hydrogen bond under the microscope Scientists in Japan have designed a scanning tunnelling microscope tip that allowed them to measure electron transfer across a single hydrogen bond. mark for My Articles similar articles
Bank Technology News
May 2007
Gregg Goth
Nanotech: Futuristic Keypad Piques Interest It won't be used for ATMs anytime soon, but recent research in nanotechnology shows that bank security may someday be extended to the molecular level. mark for My Articles similar articles
Home Toys
June 2003
Frequency vs. Signal Loss for RG-59 and RG-6 Coaxial Cable If you want to have the best possible pictures delivered by your distribution system, you will need to determine the signal losses that will occur through your cable system. mark for My Articles similar articles
Chemistry World
February 8, 2006
Jon Evans
To Boldly go Where no Chemist Has Gone Before Studying the interactions between different molecular fragments is taking researchers to the uncharted regions of chemical space. mark for My Articles similar articles
Chemistry World
July 3, 2014
Tami Spector
Of atoms and aesthetics Molecular aesthetics means many things to a few people. For some it means tangible aspects of compounds; for others yet, the ways that chemists represent molecules. mark for My Articles similar articles
Popular Mechanics
October 2006
Glenn Harlan Reynolds
Nanotechnology: Good Things in Small Packages Critics exaggerate the dangers. Boosters flog the benefits. Let's give nanotechnology a chance to develop before we start taking sides. mark for My Articles similar articles
Chemistry World
January 2010
Philip Ball
Welcome to the machine Molecular machines have promised so much but are they more whimsical than technical? mark for My Articles similar articles
Chemistry World
March 14, 2012
James Urquhart
Catalysis at the flick of a switch German researchers have created a molecular nanoswitch that can be reversibly and repeatedly turned on and off to control a chemical reaction. mark for My Articles similar articles
Chemistry World
April 6, 2009
Hayley Birch
New dye design for solar cells A new type of dye could improve the lifespan of dye-sensitised solar cells - low-cost photovoltaic cells that can convert sunlight into electricity and thought to be some of the most promising for widespread use. mark for My Articles similar articles
Chemistry World
July 8, 2013
Philip Ball
Solvent traffic responsible for electron gridlock Electron transfer is common in biochemistry, electrochemistry and redox reactions, but isn't fully understood. New research now shows that the rate at which an electron leaves its parent atom may be at the mercy of the solvent. mark for My Articles similar articles
Technology Research News
May 19, 2004
Kimberly Patch
Solar Crystals Get 2-for-1 Ordinary solar cells are designed to generate one electron for every photon they absorb. Solar cells made from nanocrystals open another possibility -- two electrons for every photon -- that promises to boost the potential amount of energy that can be harvested from the sun. mark for My Articles similar articles