ver the last few decades, significant progress has been made with inorganic materials to enable them as next generation photovoltaic materials that can fulfil the demands of green energy. Cu2ZnSn(S,Se)4stands out as a p-type absorber material due to exemption from scarce and strategic elements and its similarities with Cu2InGa(S,Se)4. Organic materials such as fullerenes and its derivatives are effective n-type semiconductors. We report the usage of n-type fullerene materials with kesterite-based absorbers in a thin film polycrystalline solar cell for the partial substitution of the CdS buffer layer with C60or C70fullerenes. Impedance measurements reveal that using C60as an interlayer increases the built-in potential, suggesting reduction i...
Recently, kesterite-based absorbers and related compounds have been considered as promising eco-frie...
Carbon materials are excellent candidates for photovoltaic solar cells: they are Earth-abundant, pos...
Abstract: Kesterite absorber material Cu2ZnSnS4 (CZTS) is attractive candidate for abundant, non-tox...
Over the last decades, significant progress has been made in inorganic materials to enable them as n...
Bulk heterojunction solar cells composed of fullerene electron acceptors and polymer electron donors...
Copper zinc tin sulfide (kesterite, Cu2ZnSnS4, CZTS) is a promising earth-abundant and non-toxic mat...
We have studied the effect of buffer layers such as poly(3,4-ethylene dioxythiophene):poly(styrenesu...
In this work kesterite-type Cu2ZnGeSxSe4-x (CZGSSe) absorbers were coated with four different buffer...
Thin-film solar cells constituted of abundant elements are the key to ensuring mass production, redu...
International audienceThe kesterite-based solar cells still suffer from a low conversion efficiency ...
International audienceIn this work kesterite-type Cu2ZnGeSxSe4−x (CZGSSe) absorbers were coated with...
The possibility to use new organic semiconductor materials, in place of silicon wafers, in the fabri...
Fullerenes and their derivatives are widely used as electron acceptors in bulk-heterojunction organi...
We show that the fullerene C70 is suitable to replace fullerene C60, which is commonly used as elect...
In this work, chemical bath-deposited cadmium sulfide (CdS) thin films were employed as an alternati...
Recently, kesterite-based absorbers and related compounds have been considered as promising eco-frie...
Carbon materials are excellent candidates for photovoltaic solar cells: they are Earth-abundant, pos...
Abstract: Kesterite absorber material Cu2ZnSnS4 (CZTS) is attractive candidate for abundant, non-tox...
Over the last decades, significant progress has been made in inorganic materials to enable them as n...
Bulk heterojunction solar cells composed of fullerene electron acceptors and polymer electron donors...
Copper zinc tin sulfide (kesterite, Cu2ZnSnS4, CZTS) is a promising earth-abundant and non-toxic mat...
We have studied the effect of buffer layers such as poly(3,4-ethylene dioxythiophene):poly(styrenesu...
In this work kesterite-type Cu2ZnGeSxSe4-x (CZGSSe) absorbers were coated with four different buffer...
Thin-film solar cells constituted of abundant elements are the key to ensuring mass production, redu...
International audienceThe kesterite-based solar cells still suffer from a low conversion efficiency ...
International audienceIn this work kesterite-type Cu2ZnGeSxSe4−x (CZGSSe) absorbers were coated with...
The possibility to use new organic semiconductor materials, in place of silicon wafers, in the fabri...
Fullerenes and their derivatives are widely used as electron acceptors in bulk-heterojunction organi...
We show that the fullerene C70 is suitable to replace fullerene C60, which is commonly used as elect...
In this work, chemical bath-deposited cadmium sulfide (CdS) thin films were employed as an alternati...
Recently, kesterite-based absorbers and related compounds have been considered as promising eco-frie...
Carbon materials are excellent candidates for photovoltaic solar cells: they are Earth-abundant, pos...
Abstract: Kesterite absorber material Cu2ZnSnS4 (CZTS) is attractive candidate for abundant, non-tox...