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The maximum weight composition of OTZnS was 67% for transparent film, and higher OTZnS composition resulted in the formation of brittle and heterogeneous films.
The CdTe TiO2 heterogeneous films were characterized by X-ray photoelectron spectroscopy which identified doublet split of Cd 3d and Ti 2p which confirms CdTe and TiO2.
The MA approach incorporated with thermal reduction is capable of uniformly disperse Cu deposits onto GNs, forming Cu/GN heterogeneous films.
Exploration and practical application of the method would rely on the modeling capability to predict complex nanocracks and their geometries in heterogeneous films.
With the aid of Cu deposits, a remarkably improved electrical conductivity of Cu/GN heterogeneous films is observed, and the relation of k versus σ is also investigated.
Results can be articulated to the CdTe deposited by 5 SPD cycles provided an optimum surface coverage in the bulk of TiO2, while the higher SPD cycles leads to agglomeration which blocks the porosity of the heterogeneous films.
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This can be viewed as randomly distributed mesoscopic clusters of SPD-processed CdTe/TiO2 heterogeneous film.
The photocurrent density of PbS/CdS co-sensitized TiO2 heterogeneous film was enhanced to 7.72 mA/cm2.
Hierarchical rutile/anatase TiO2 heterogeneous film for photoelectrochemical application is reported in the work.
The optimal photocurrent density of bare TiO2 heterogeneous film was 0.90 matcm2 at a potential of 0 V versus Ag/AgCl.
The TiO2 heterogeneous film is fabricated by two-step hydrothermal method and possesses high light harvesting property.
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