WHICH ONE SOLAR CHARGER IS MORE EFFECTIVE -2018

Monocrystalline silicon

Monocrystalline silicon solar cells are probably the oldest solar cells. They are made of pure silicon crystals with continuous lattices and almost no defects. Its property r light conversion efficiency is high (typical ~15%; Recent developments at SunPower have increased efficiency by 22 to 24 percent. Silicon crystals are also complicated to make, which is one reason. This type of photovoltaic cell can be used at high cost. Recent developments have reduced the overall thickness of silicon materials used in single-crystal batteries to reduce costs. Monocrystalline silicon cells have a typical black or iridescent blue color. Monocrystalline silicon cells are considered to be very durable and last more than 25 years. However, their efficiency will gradually decline (about 0.5 per cent). Therefore, you may need to replace the operation module earlier. The main disadvantages of monocrystalline silicon panels are high initial cost and mechanical fragility (brittleness)(solar energy).


Polycrystalline 


Polycrystalline cells are made by assembling multiple grains and silicon wafers into thin wafers. Smaller silicon wafers are easier to produce and cheaper to make, so they cost less to make than single-crystal silicon cells. Polycrystalline cells are slightly less efficient (~12%). These cells can be identified by their Mosaic appearance. Pleiotropic crystal cells are also very durable and can last more than 25 years. The disadvantages of this photovoltaic technology are mechanical brittleness and low conversion efficiency.

Thin-film photovoltaic 

Thin-film photovoltaic cells are prepared by depositing silicon film on the substrate glass. In the process, less silicon is produced than single-cell or polythyristors, but the economy comes at the expense of conversion efficiency. The efficiency of thin-film PV for single-crystal Si cells is ~6% and 15% respectively. One way to improve the cell efficiency is to create layered Struc. The reality of a few cells. The main advantage of thin-film pv technology is that amorphous silicon can be deposited on a variety of substrates to make it flexible and grow on different substrates. Therefore, it can be used in many applications. Amorphous silicon is also less likely to overheat, which generally reduces the performance of solar cells. Amorphous silicon is the most developed AMO thin film photovoltaic.


Comprehensive, monocrystalline silicon solar panels service life is longer, more efficient, in terms of use for a long time, can reduce our costs, more durable, portable solar panels for our usage will be more, we can go out hiking, boating, home emergency, ease of use when natural disasters, RV, outdoor activities and indoor use, such as life more convenient for us.

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