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method for producing composite nanomaterial, hybrid composite nanomaterial, derivative material, organic-inorganic solar cell, hybrid organic-inorganic cell and method for producing a cigs replica material
method for producing composite nanomaterial, hybrid composite nanomaterial, derivative material, organic-inorganic solar cell, hybrid organic-inorganic cell and method for producing a cigs replica material
Summary a hybrid composite nanomaterial comprising a hydrotalcite-like double layer hydroxide compound provided with one or more lanthanide elements inserted into layers 2d and one or more organic-inorganic (donor / receptor) compounds, or salts or acids thereof interspersed therewith. , as shown in Figure 1 and Figure 31. The innovative coax design for encapsulating the active layer (s) of a hybrid organic-inorganic solar cell, together with the insertion of hydrotalcite as nanocomposite, for downlight energy conversion and upward, thereby not only providing a more energy-convertible active material, but also providing the opportunity to incorporate coaxial geometry in situ or predict an independent pair of photoelectrochemical (pec) and fuel cells (fc) to work in parallel to the organic-inorganic solar cell, or as independent respectively. hydrotalcite nanocomposite, or derivatives thereof, is designed to be dispersed within coaxial geometry, where they can occupy the role of the respective electrodes for pec / fc and also absorb the hydrogen developed for future use, through which they can also they can convert excess hydrogen into usable electrical energy when in the presence of inorganic organic solar cells as their complementary existence around or within their coaxial layers as shown in figure 32 (a) and (b). Also contemplated above is the potential for utilizing the coaxial hybrid organic-inorganic cell (pec / fc) as independently excited by any other energy source than the organic-inorganic solar cell.
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