MIT researchers have developed the world's most light and thin solar cell. The solar cell light enough thin enough, can be placed in a bubble and don't let it break. Due to the physical size is small enough, solar cell may be inserted in the many items, such as paper,
at the Massachusetts institute of technology researchers have developed the world's most light and thin solar cell. Solar cells, light enough, thin enough, can be placed in a bubble without breaking them. Because the physical size of solar cells is small enough, it can be inserted in the many items, such as paper, clothing and spacecraft. Very light in wearable devices, solar cells, even if the wearer can't see their presence. The team spent years to find a new way to make solar cells. Lowe vladimir cloth? He and his team have found a way to combine the three independent process method: manufacturing solar cells, and manufacturing support solar cell substrate, and the protection of the annular lens coating manufacture. Therefore, they not only developed the lightest and most thin solar cells, and if take into consideration of the power-to-weight ratio, they developed the solar cell energy efficiency is the highest. In general, silicon solar cell module can produce 15 watts per kg, and the new solar cells display can produce 6 watts per gram, performance improved 400 times. Actual use is much more complex. Power-to-weight ratio is important in the field of aviation and space, the new type of solar cell can be used in the high altitude balloon, spacecraft and satellite Internet. The new solar cells can also be used in some real environment, such as smart phones. It can collect energy from the sun. The battery can also be embedded intelligent clothes and intelligent in the paper. ; The new solar cells is very light, you may not even know of its existence. It can also be installed in a tee shirt or notebook. ; Mr D? In an interview, he said, the battery can be used as the attachment of the existing structure. ; It should be noted that the new solar cells is still in the proof-of-concept stage at present, its engineering and manufacturing process is reasonable, so it is entirely possible that make its commercialization. ; How many miracle form large-scale application need? ; Mr D? You say: have a lot of work to do, but don't need a miracle. ;