Bismuth sulfide is a promising n-type semiconductor for solar energy conversion. We have explored the colloidal synthesis of Bi2S3 nanocrystals, with the aim of employing them in the fabrication of solution-processable solar cells and to replace toxic heavy metals chalcogenides like PbS or CdS, that are currently employed in such devices. We compare different methods to obtain Bi2S3 colloidal quantum dots, including the use of environmentally benign reactants, through organometallic synthesis. Different sizes and shapes were obtained according to the synthesis parameters and the growth process has been rationalized by comparing the predicted morphology with systematic physical-chemistry characterization of nanocrystals by X-ray diffraction,...
Solution-processing routes for making solar cells have gained momentum due to its ability to fabrica...
Bismuth sulfide (Bi2S3), a direct band gap material with Eg # 1.3 eV, attracts high interest in ther...
As a direct bandgap semiconductor, Bi2S3 has the potential ability to improve the photocatalytic act...
Bismuth sulfide is a promising n-type semiconductor for solar energy conversion. We have explored th...
Global energy consumption is expected to increase significantly together with the greenhouse gas emi...
Nanostructured metal sulfides (MS) have attracted great interest in recent years because of the pos...
Abstract: Nano structured materials have become one of the most important research subjects and have...
International audienceA solvothermal process has been employed to synthesis Bi2S3 nanostructures whi...
One-dimensional nanostructures have gained more attraction in recent years because of their high asp...
Nanorods of bismuth sulphide were prepared by thermal decomposition of bismuth N-ethyl cyclohexyl di...
Bi<sub>2</sub>S<sub>3</sub> nanocrystals with different shapes and sizes are obtained by a hot injec...
Among solution-processed nanocrystals containing environmentally benign elements, bismuth sulfide (B...
Metal sulfides with moderate band gaps are desired for efficient generation of electricity or fuels ...
Colloidal semiconductor nanocrystals have shown great promise in functional devices such as solar ...
textNew and general synthetic methods for materials confined to nanometer length scales are needed ...
Solution-processing routes for making solar cells have gained momentum due to its ability to fabrica...
Bismuth sulfide (Bi2S3), a direct band gap material with Eg # 1.3 eV, attracts high interest in ther...
As a direct bandgap semiconductor, Bi2S3 has the potential ability to improve the photocatalytic act...
Bismuth sulfide is a promising n-type semiconductor for solar energy conversion. We have explored th...
Global energy consumption is expected to increase significantly together with the greenhouse gas emi...
Nanostructured metal sulfides (MS) have attracted great interest in recent years because of the pos...
Abstract: Nano structured materials have become one of the most important research subjects and have...
International audienceA solvothermal process has been employed to synthesis Bi2S3 nanostructures whi...
One-dimensional nanostructures have gained more attraction in recent years because of their high asp...
Nanorods of bismuth sulphide were prepared by thermal decomposition of bismuth N-ethyl cyclohexyl di...
Bi<sub>2</sub>S<sub>3</sub> nanocrystals with different shapes and sizes are obtained by a hot injec...
Among solution-processed nanocrystals containing environmentally benign elements, bismuth sulfide (B...
Metal sulfides with moderate band gaps are desired for efficient generation of electricity or fuels ...
Colloidal semiconductor nanocrystals have shown great promise in functional devices such as solar ...
textNew and general synthetic methods for materials confined to nanometer length scales are needed ...
Solution-processing routes for making solar cells have gained momentum due to its ability to fabrica...
Bismuth sulfide (Bi2S3), a direct band gap material with Eg # 1.3 eV, attracts high interest in ther...
As a direct bandgap semiconductor, Bi2S3 has the potential ability to improve the photocatalytic act...