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Low conversion efficiencies however inhibit their wide scale deployment.
The two major problems of conventional photovoltaic devices are their low conversion efficiencies and relatively high production cost.
However, due to the current low conversion efficiencies of thermoelectric materials, increasing electrical power generation causes the overall combined efficiency to suffer.
In spite of merits of these semiconductor materials for its solar cell application, reasons for the low conversion efficiencies of cells based on stibinite family members still elude better understanding.
The reasons for the different genetic susceptibility have been assessed in vitro revealing low conversion efficiencies of PrPc into PrPSc in resistant genotypes [ 8, 9].
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Rather low conversion efficiency diminishes the potential of biofuels.
The higher modulation indices will have low conversion efficiency.
Despite their low conversion efficiency, they can be very suitable for a big number of applications.
Those reported that InGaN solar cells show a low conversion efficiency of less than 2%.
However, this process is sensible to impurities, and has low conversion efficiency.
Currently, combustion-based micro power devices encounter the problem of low conversion efficiency.
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