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* Don’t rely on a single p-n junction configuration
* Tandem cells-stacks of p-n junctions structures
* Theoretical energy conversion efficiency of up to 66% <ref>Edgar 446Etgar, L. “Semiconductor Nanocrystals as Light Harvesters in Solar Cells”, Materials, p. 445-455, 2013.</ref>* Optical and electronic properties can be tweaked by changing the size of Quantum Dots (E<ref>Etgar, L. “Semiconductor Nanocrystals as Light Harvesters in Solar Cells”, Materials, p. 445-455, 2013.446)</ref>* Able “to inject electrons to a wider band gap material, such as TiO2”<ref>Etgar 452, L. “Semiconductor Nanocrystals as Light Harvesters in Solar Cells”, Materials, p. 445-455, 2013.</ref>
* Higher light to energy efficiency
* Easy to manufacture
* Low cost
* Capable of layer-by-layer deposition <ref>Webber p.7835 </ref>
* Theoretical Energy Conversion Efficiency of 66% <ref>Etgar , L. “Semiconductor Nanocrystals as Light Harvesters in Solar Cells”, Materials, p. 445-455, 2013. </ref>
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