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Nothing excites the imagination of the general public or researchers in the area of alternative energy like solar power does. You can explain until you’re blue in the face how wind power is cheaper per Kwh than solar, or how nanotech is really having an impact now on saving energy as opposed to generating it.

But it all hardly seems to matter. People want to know how nanotech is going to enable solar power. The latest news item comes out of MIT where researchers have formed carbon nanotubes into a kind of antenna that focuses photons onto photovoltaic cells and reportedly concentrates solar energy 100 times more than a regular cell.

According to Michael Strano, the leader of the research team and Charles and Hilda Roddey Associate Professor of Chemical Engineering at MIT, this development could result in smaller solar arrays.

“Instead of having your whole roof be a photovoltaic cell, you could have little spots that were tiny photovoltaic cells, with antennas that would drive photons into them,” says Michael Strano in the article.

The work was originally published in the Sept. 12 online edition of the journal Nature Materials.

The antennas are made of about 30 billion carbon nanotubes and resemble a fibrous strand with dimensions of 10 micrometers long and four micrometers thick. The fiber has different bandgaps. The inner layer of the fiber has a small bandgap while the outerlayer have a higher bandbap. So when photons hit the antenna all the excitons flow to the center of the fiber thereby concentrating them.

While this is all very far off from even a full-fledged prototype since the researchers have not yet built a photovoltaic cell that could use the antenna, it seems that commercial considerations are already being taken into account with concerns about the price per pound of single-walled carbon nanotubes being discussed.

One would think that a discussion of economic issues like price of raw materials and phrases like “100 times” better than existing technologies would interest funding types. But likely they see 10 years before a ROI and myriad competing technologies and shrug.


In a world using up fossil fuels at an ever growing rate, renewable energy sources like solar power are becoming more and more valuable.

The Problem With Solar Panels

But solar panels have a problem. A single panel can only capture so much sunlight and produce a limited amount of electricity.

That’s why large solar farms consist of thousands and thousands of panels. And the more panels you need to generate power, the more expensive solar energy becomes.

Which is why scientists are eager to find ways to make solar panels more powerful, and more efficient.

Nanotechnology

One of the most intriguing and promising approaches is through nanotechnology. More specifically, researchers around the world are experimenting with carbon nanotubes–basically carbon atoms arranged in hollow tubes.

Carbon Nanotubes Capture And Funnel Light

Carbon nanotubes specially designed to capture and funnel as much light as possible at all wavelengths could solve that problem. Nanotube antennas could result in solar cells that are much smaller but also more powerful than today’s commercial cells.

At the moment, though, such cells are only a theoretical possibility. Researchers need to work out dozens of technical details before nanotube powered solar cells become a reality.





Nanotechnology describes the science of using very small-scale materials, like individual atoms and molecules, to build machines and technologies on incredibly small scales.

Nanotechnology is a new science, and many of its most promising applications in medicine, chemistry, engineering, and electronics are still being developed in labs around the world. In many ways, nano-scale technologies are already among us.

Stain Resistant Clothing

There are companies that use nanotechnology to make clothing that resist dirt, stains, and water. Spill a glass of water on a pair of pants coated with water-resistant nanoparticles, and instead of soaking into the fabric, the water beads and slides right off.

A Germ Killing Dress?

Silver is a natural antibacterial, and on the nanoscale silver’s bacteria killing properties are even more pronounced. A dress containing embedded silver particles can, at least theoretically, kill germs and help prevent colds and other illnesses.

A jacket coated with nanoscale palladium particles can oxidize smog, which could protect the wearer from harmful pollutants in contaminated air. This is just a small sample of the practical ways that nanotechnology can be used. Over the next several decades, it’s a safe bet that this science of the very small will have a big impact on our world.

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