Carbon nanomaterials in coatings: A review focusing thin film
Carbon have shown remarkable potential to replace the harmful and scarce materials by its abundant nature and extremely favorable electrical and optical characteristics. Hence

Future research into finding a new and appropriate carbon electrode and a chemically-stable hole-transporting layer (HTL) will play a key role in the development of advanced
Perovskite solar cells with carbon back contact (C-PSC) represent a promising architecture that allows for a simplification of the manufacture process and a stabilization of the cell
Future research into finding a new and appropriate carbon electrode and a chemically-stable hole-transporting layer (HTL) will play a key
Carbon materials have the advantages of abundant sources, high electrochemical stability, and hole extraction, and these advantages are unavailable for metal electrodes. Therefore, the manufacturing
Carbon materials have the advantages of abundant sources, high electrochemical stability, and hole extraction, and these advantages are unavailable for metal
Carbon materials are a promising solution for silicon-based solar cells. These materials play a vital role in better charge transport, enhanced light absorption, and the development
Perovskite solar cells with carbon back contact (C-PSC) represent a promising architecture that allows for a simplification of the
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