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Solar cells based on the obtained perovskite films exhibit a power conversion efficiency of 9%.
This performance represents the best among the solar cells based on the single molecular materials.
Compared to the cells based on the CdS(n)/DTTO electrodes, for a certain cycle n, all four parameters V oc, J sc, FF, and PCE of the cells based on the CdS(n)/CuInS2/DTTO electrodes are improved.
The planar solar cells based on the compact layer of MAPbI2Br nanosheets achieved a PCE of ~10%.
This indicates that cells based on the hybrid ligands efficiently suppress the leakage current at the PbS/Al interface.
(K) Mitochondrial clustering was analyzed by categorizing cells based on the criteria of complete clustering, partial clustering, or no clustering.
Subsequently, we investigate the performances and underlying device physics of these inorganic solar cells based on the ZnO nanostructures.
Furthermore, we discussed the influence in practical cells based on the consideration of electrochemistry of the deposited metals.
The cells, based on the lithium-ion chemistry, were designed in a size that is compatible with the existing HAD.
Solar cells based on the designed polymerizable fullerene derivative demonstrated highly stable operation even at elevated temperatures.
Here we established a simple and quantitative design principle for large-area solar cells based on the model.
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CEO of Professional Science Editing for Scientists @ prosciediting.com