A review on advances in doping with alkali metals in halide perovskite materials
Abstract Recent progress in doping of halide perovskite materials (HPM) by using targeted elements has provided a dimension beyond structural and compositional modification, for achieving desired properties and resulting device performance. Herein doping of alkali metal ions (Li+, Na+, K+, Rb+, and...
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2021
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oai:doaj.org-article:8c483e5d1486499e8245fbdc0a0e7ea62021-11-28T12:13:36ZA review on advances in doping with alkali metals in halide perovskite materials10.1007/s42452-021-04877-x2523-39632523-3971https://doaj.org/article/8c483e5d1486499e8245fbdc0a0e7ea62021-11-01T00:00:00Zhttps://doi.org/10.1007/s42452-021-04877-xhttps://doaj.org/toc/2523-3963https://doaj.org/toc/2523-3971Abstract Recent progress in doping of halide perovskite materials (HPM) by using targeted elements has provided a dimension beyond structural and compositional modification, for achieving desired properties and resulting device performance. Herein doping of alkali metal ions (Li+, Na+, K+, Rb+, and Cs+) in three-dimensional HPM is reviewed to lay a particular focus on advances in synthesis, doping-induced changes in optical and electrical properties, and their optoelectronic applications. The introduction of alkali metals in HPM shows an effective route for improved morphology, suppressed ion migration, reduction in non-radiative recombination, passivation of bulk and interface defects, and increased thermal stability. In the end, we provide our perspective that the effect of alkali metal incorporation on the efficiency and stability of HPM should be further investigated via in-situ characterization methods and doped HPM should be considered for more functional applications. Graphical abstractMadeeha TabassumQasim ZiaYongfeng ZhouMichael J. ReeceLei SuSpringerarticleHalide perovskitesDopingAlkali metalsMorphologyDefectsStabilityScienceQTechnologyTENSN Applied Sciences, Vol 3, Iss 12, Pp 1-15 (2021) |
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Halide perovskites Doping Alkali metals Morphology Defects Stability Science Q Technology T |
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Halide perovskites Doping Alkali metals Morphology Defects Stability Science Q Technology T Madeeha Tabassum Qasim Zia Yongfeng Zhou Michael J. Reece Lei Su A review on advances in doping with alkali metals in halide perovskite materials |
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Abstract Recent progress in doping of halide perovskite materials (HPM) by using targeted elements has provided a dimension beyond structural and compositional modification, for achieving desired properties and resulting device performance. Herein doping of alkali metal ions (Li+, Na+, K+, Rb+, and Cs+) in three-dimensional HPM is reviewed to lay a particular focus on advances in synthesis, doping-induced changes in optical and electrical properties, and their optoelectronic applications. The introduction of alkali metals in HPM shows an effective route for improved morphology, suppressed ion migration, reduction in non-radiative recombination, passivation of bulk and interface defects, and increased thermal stability. In the end, we provide our perspective that the effect of alkali metal incorporation on the efficiency and stability of HPM should be further investigated via in-situ characterization methods and doped HPM should be considered for more functional applications. Graphical abstract |
format |
article |
author |
Madeeha Tabassum Qasim Zia Yongfeng Zhou Michael J. Reece Lei Su |
author_facet |
Madeeha Tabassum Qasim Zia Yongfeng Zhou Michael J. Reece Lei Su |
author_sort |
Madeeha Tabassum |
title |
A review on advances in doping with alkali metals in halide perovskite materials |
title_short |
A review on advances in doping with alkali metals in halide perovskite materials |
title_full |
A review on advances in doping with alkali metals in halide perovskite materials |
title_fullStr |
A review on advances in doping with alkali metals in halide perovskite materials |
title_full_unstemmed |
A review on advances in doping with alkali metals in halide perovskite materials |
title_sort |
review on advances in doping with alkali metals in halide perovskite materials |
publisher |
Springer |
publishDate |
2021 |
url |
https://doaj.org/article/8c483e5d1486499e8245fbdc0a0e7ea6 |
work_keys_str_mv |
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