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Sustainable p-type copper selenide solar material with ultra-large absorption coefficient

Earth-abundant solar absorber materials with large optical absorption coefficients in the visible enable the fabrication of low-cost high-efficiency single and multi-junction thin-film solar cells. Here, we report a new p-type semiconductor, Cu(4)TiSe(4) (CTSe), featuring indirect (1.15 eV) and dire...

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Autores principales: Chen, Erica M., Williams, Logan, Olvera, Alan, Zhang, Cheng, Zhang, Mingfei, Shi, Guangsha, Heron, John T., Qi, Liang, Guo, L. Jay, Kioupakis, Emmanouil, Poudeu, Pierre F. P.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Royal Society of Chemistry 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6009434/
https://www.ncbi.nlm.nih.gov/pubmed/30009012
http://dx.doi.org/10.1039/c8sc00873f
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author Chen, Erica M.
Williams, Logan
Olvera, Alan
Zhang, Cheng
Zhang, Mingfei
Shi, Guangsha
Heron, John T.
Qi, Liang
Guo, L. Jay
Kioupakis, Emmanouil
Poudeu, Pierre F. P.
author_facet Chen, Erica M.
Williams, Logan
Olvera, Alan
Zhang, Cheng
Zhang, Mingfei
Shi, Guangsha
Heron, John T.
Qi, Liang
Guo, L. Jay
Kioupakis, Emmanouil
Poudeu, Pierre F. P.
author_sort Chen, Erica M.
collection PubMed
description Earth-abundant solar absorber materials with large optical absorption coefficients in the visible enable the fabrication of low-cost high-efficiency single and multi-junction thin-film solar cells. Here, we report a new p-type semiconductor, Cu(4)TiSe(4) (CTSe), featuring indirect (1.15 eV) and direct (1.34 eV) band gaps in the optimal range for solar absorber materials. CTSe crystallizes in a new noncentrosymmetric cubic structure (space group F4[combining macron]3c) in which CuSe(4) tetrahedra share edges and corners to form octahedral anionic clusters, [Cu(4)Se(4)](4–), which in turn share corners to build the three-dimensional framework, with Ti(4+) ions located at tetrahedral interstices within the channels. The unique crystal structure and the Ti 3d orbital character of the conduction band of CTSe give rise to near-optimal band gap values and ultra-large absorption coefficients (larger than 10(5) cm(–1)) throughout the visible range, which are promising for scalable low-cost high-efficiency CTSe-based thin-film solar cells.
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spelling pubmed-60094342018-07-13 Sustainable p-type copper selenide solar material with ultra-large absorption coefficient Chen, Erica M. Williams, Logan Olvera, Alan Zhang, Cheng Zhang, Mingfei Shi, Guangsha Heron, John T. Qi, Liang Guo, L. Jay Kioupakis, Emmanouil Poudeu, Pierre F. P. Chem Sci Chemistry Earth-abundant solar absorber materials with large optical absorption coefficients in the visible enable the fabrication of low-cost high-efficiency single and multi-junction thin-film solar cells. Here, we report a new p-type semiconductor, Cu(4)TiSe(4) (CTSe), featuring indirect (1.15 eV) and direct (1.34 eV) band gaps in the optimal range for solar absorber materials. CTSe crystallizes in a new noncentrosymmetric cubic structure (space group F4[combining macron]3c) in which CuSe(4) tetrahedra share edges and corners to form octahedral anionic clusters, [Cu(4)Se(4)](4–), which in turn share corners to build the three-dimensional framework, with Ti(4+) ions located at tetrahedral interstices within the channels. The unique crystal structure and the Ti 3d orbital character of the conduction band of CTSe give rise to near-optimal band gap values and ultra-large absorption coefficients (larger than 10(5) cm(–1)) throughout the visible range, which are promising for scalable low-cost high-efficiency CTSe-based thin-film solar cells. Royal Society of Chemistry 2018-05-15 /pmc/articles/PMC6009434/ /pubmed/30009012 http://dx.doi.org/10.1039/c8sc00873f Text en This journal is © The Royal Society of Chemistry 2018 http://creativecommons.org/licenses/by-nc/3.0/ This article is freely available. This article is licensed under a Creative Commons Attribution Non Commercial 3.0 Unported Licence (CC BY-NC 3.0)
spellingShingle Chemistry
Chen, Erica M.
Williams, Logan
Olvera, Alan
Zhang, Cheng
Zhang, Mingfei
Shi, Guangsha
Heron, John T.
Qi, Liang
Guo, L. Jay
Kioupakis, Emmanouil
Poudeu, Pierre F. P.
Sustainable p-type copper selenide solar material with ultra-large absorption coefficient
title Sustainable p-type copper selenide solar material with ultra-large absorption coefficient
title_full Sustainable p-type copper selenide solar material with ultra-large absorption coefficient
title_fullStr Sustainable p-type copper selenide solar material with ultra-large absorption coefficient
title_full_unstemmed Sustainable p-type copper selenide solar material with ultra-large absorption coefficient
title_short Sustainable p-type copper selenide solar material with ultra-large absorption coefficient
title_sort sustainable p-type copper selenide solar material with ultra-large absorption coefficient
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6009434/
https://www.ncbi.nlm.nih.gov/pubmed/30009012
http://dx.doi.org/10.1039/c8sc00873f
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