Researchers break efficiency record for consumer-friendly solar panels

Turning sunlight into power is a surprisingly tricky thing. Experiments in academia have created solar arrays that can capture up to 40-percent of the sun’s energy and convert it to electricity, but consumer cells are notably less efficient. At best, silicon-based technology has a theoretical 29-percent efficiency ceiling — meaning any consumer panel in the low 20s is doing pretty well. Still, we’re inching ever closer to the technology’s limit. Researchers at Kaneko corp recently announced that they’ve developed a silicon solar cell with a record-breaking 26.3 percent efficiency rating. The score is only just barely higher than the previous record of 25.6, but that 0.7 percent gain is no easy feat. Researchers had to analyze what factors in current cell design was keeping the technology from reaching its theoretical limits. The group decided that reducing optical loss was the best path forward, and moved low-resistance electrodes to the rear of the cell to increase the amount of photons that could be captured. That’s a lot of technical jargon, sure — but the big win here isn’t just that the cell is more efficient, it’s that the more productive silicon cell was produced using the same kind of production process used for consumer sells. In other words, this isn’t just an experiment, it’s something we might actually see on the market soon. Via: Ars Technica Source: Nature Energy

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Researchers break efficiency record for consumer-friendly solar panels

Think your sex life is complicated? Imagine having 7 sexes.

No, this isn’t something out of an Octavia Butler novel. It’s Tetrahymena thermophila — a single-celled organism that goes way beyond male and female. It has seven different sexes to choose from. Now a new study published in PLOS has finally made sense of its bizarrely complex and seemingly random sex life. Read more…

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Think your sex life is complicated? Imagine having 7 sexes.

MIT crafts genetic circuits that remember their work through DNA

It’s easy to find work on gene-based storage ; finding genes that will do any of the heavy lifting is another matter. MIT believes it has a genetic circuit that will finally get to work, and then some. In using recombinase enzymes to alter DNA sequences serving as logic gates, researchers have developed a cellular circuit that not only mimics its silicon cousins, but has its own built-in memory. As the gate activation makes permanent changes to a given DNA sequence, any gate actions stay in memory for up to 90 generations — and will hang around even if the cell’s life is cut short. MIT sees its technique as having ultimate uses for areas where longer-term memory is important, such as environmental sensors, but could also see varying output values helping with digital-to-analog converters and other devices where there’s a need for more precision. While there’s no word on imminent plans for real-world use, the development raises the possibility of processors that could skip the traditional memory cache as they pass info down the family tree. Filed under: Science , Alt Comments Via: SciTechDaily Source: MIT

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MIT crafts genetic circuits that remember their work through DNA