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Boston.com

Boston.com reporter Matt Rocheleau reports on how Professor Jeffrey Grossman and postdoctoral associate Timothy Kucharski have developed a new material that can produce solar power for times when the sun is not shining.

The Guardian

The Guardian reports on new MIT research that shows that adding carbon nanotubes to plants can enhance the natural photosynthesis process. The bionic plants could be used to harvest sunlight or detect environmental pollutants.

USA Today

Writing for USA Today, Karen Weintraub reports on Professor Michael Strano’s work to give plants the ability to serve as sensors, antennae and power plants thanks to carbon nanotubes embedded inside the plant.

Los Angeles Times

“Researchers at MIT are giving plants super powers by placing tiny carbon nanotubes deep within their cells,” writes Deborah Netburn in a Los Angeles Times piece on bionic plants developed by MIT researchers.

US News & World Report

Alan Neuhasuser reporting for U.S. News & World Report examines how MIT researchers have embedded carbon nanotubes in plants, helping them collect more sunlight. The bionic plants could be used to detect explosives, chemical weapons and more, Neuhasuser reports.

Wired

“A team of biologists and engineers want to turn plants into chemical warfare detectors that can sniff out sarin gas or explosives. For now, though, they've succeeded in turning the flowering Arabidopsis thaliana into a pollutant detector using carbon nanotubes,” writes Wired reporter Liat Clark of the new bionic plants developed at MIT.

New Scientist

New Scientist’s Catherine Brahic reports on new bionic plants developed at MIT. The plants, which have an increased ability to photosynthesise thanks to nanomaterials embedded in their cells, could be used to create self-powering and self-repairing materials, new types of fuel cells and more, Brahic reports.

Scientific American

Writing for Scientific American, David Biello reports on a team of MIT researchers who are giving plants and the photosynthesis process an extra boost thanks to carbon nanotubes the team embedded deep within the plant’s leaves.