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- W2078442074 abstract "A low-cost, environmentally benign method was used to prepare nanostructured thin films of Co5(OH)8(NO3)2·2H2O, a layered double hydroxide p-type semiconductor. When infilled with poly(3-butylthiophene) (P3BT), an n-type semiconducting polymer, the resulting hybrid bulk heterojunction yields a photovoltaic device. The indium-doped tin oxide/Co5(OH)8(NO3)2·2H2O/P3BT/Al cell described here is an unprecedented example of an optoelectronic device fabricated by a low-cost biologically inspired pathway independent of organic structure-directing agents. Under illumination, this proof-of-principle device yields an open circuit voltage of 1.38 V, a short circuit current of 9 μA/cm2, a fill factor of 26% and a power efficiency of 3.2·10− 3%. While the open circuit voltage of this prototype cell is close to its theoretical maximum, potential sources of the observed low efficiency are identified, and a suggested path for improvement is discussed." @default.
- W2078442074 created "2016-06-24" @default.
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- W2078442074 date "2009-08-01" @default.
- W2078442074 modified "2023-10-18" @default.
- W2078442074 title "Nanostructured p-type cobalt layered double hydroxide/n-type polymer bulk heterojunction yields an inexpensive photovoltaic cell" @default.
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- W2078442074 doi "https://doi.org/10.1016/j.tsf.2009.02.131" @default.
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