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Knocking the NOx Out of Coal

Nitrogen is the most common part of the air we breathe. In fact, about 80% of the air is nitrogen. Normally, nitrogen atoms float around joined to each other like chemical couples. But when air is heated in a coal boiler's flame, for example these nitrogen atoms break apart and join with oxygen. This forms 'nitrogen oxides' or, as it is sometimes ...

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KnockingtheNOxOutofCoal
Biology

Brain Waves

Your brainwaves normally vary from a low vibrational state of about one Hz ('Hertz,' or vibrations per second) to a high of about 30 Hz. The highest-frequency vibrations, ranging from about 13 to 30 ... Continue reading

BrainWaves
Biology

The World's Largest Clone

What's the world's largest clone? It's not a sheep, but an aspen tree...and it's a natural clone, not a human-engineered one. Nicknamed 'Pando' (Latin for 'I spread'), this 'stand' of 47,000 aspens in ... Continue reading

WorldsLargestClone
Geology

Retreating Glaciers Spur Alaskan Earthquakes

Could an extra warm summer cause an earthquake in your backyard? Probably not... unless you live in Alaska. You probably know that friction in the earth's crust causes earthquakes, but did you know ... Continue reading

AlaskanEarthquakes
Chemistry

What Makes a Candle Burn?

Have you ever wondered how a candle works? If you haven't, think about it for a while. Why does it take so long for the wick to burn down? Why does it need a wick at all? ... Continue reading

CandleLight

Single Molecule Electroluminescence

ElectroluminescenceIncandescence and luminescence are two main ways of producing light. In incandescence, electric current is passed through a conductor (filament of a light bulb for example). The resistance to the current in the conductor heats it up and it starts emitting light - glowing. Any other form of producing light without heat is called Luminescence, sometimes referred to as 'cold light'. There are various types of luminescence: electroluminescence, chemiluminescence, photoluminescence, etc.

Most glow in the dark toys work on the photoluminescence principle: you expose the dye in the toy to UV - Ultra Violet light (black light) and it emits light in the visible (say green) without getting hot. Emergency light sticks would be an example of chemiluminescence. Two chemicals contained in the stick are mixed when you break the stick and the chemical reaction between them produces light, again without the stick getting hot. Electroluminescence, however, is a phenomenon where electric field energy is converted into light. Plug-in night lights, light emitting diodes, and some displays work on this principle.

Electroluminescent technology has been around for some time; however a research group from the Georgia Institute of Technology has recently made a breakthrough. They produced electroluminescence from a single molecule of silver. They exposed thin films of silver oxide, which are not electroluminescent, to direct current of approximately one ampere. This activated some of the silver oxide molecules, which then appeared within discolored regions in the film (image part A). When electrodes carrying alternating current were then attached to the film a thin line of silver clusters began to emit light in colors that varied depending on the size of the clusters (image part B). When they zoomed in (image part C), single molecule light emission signatures were visible. This was a first observation of a single molecule electroluminescence. Further research may lead to small light sources that can be used on computer chips, small optical memories, high-efficiency quantum information processing and cryptography.