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Understanding nanoscale solar cells

A team of researchers from the AMOLF-group Nanoscale Solar Cells and Eindhoven University of Technology have developed both a theory and an experimental method that provide the first detailed demonstration of how a nanoscale solar cell works. This had proved challenging until now due to the exceptionally small size of these solar cells. This new method has brought implementation of nanotechnology in the production of sustainable energy a step closer. The researchers published their results on 12 September 2016 in an article in Nature Nanotechnology.

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Nanotechnology can improve solar cell efficiencies via directional emission

Researchers from the Nanoscale Solar Cells group at AMOLF together with collaborators from the University of Texas, Austin, and Columbia University, New York, found that nanostructures can enable efficiencies above the so-called “Shockley-Queisser” limit, which limits the efficiency of a normal solar cell to 34%. These results were published in ACS Nano on September 1, 2016.

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Premiere: watch the development of a larva into an adult worm live

Researchers from FOM institute AMOLF have developed a microscopy technique for the live tracking of development in the individual cells of a growing, eating and moving organism, the nematode worm Caenorhabditis elegans. The next step is to find out how environmental factors affect development. The researchers will publish their findings in Nature Communications, on August 25, 2016.

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Building with flexible blocks

On an apparently normal cube a pattern of hollows and bulges appears when the cube is compressed. Physicists from FOM Institute AMOLF and Leiden University together with colleagues from Tel Aviv University have developed a method to design such three-dimensional structures and to construct these using simple building blocks. This paves the way for the use of ‘machine materials’ in, for example, prostheses and wearable technology. The researchers published their findings on 28 July in an article in Nature.

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