Structural and spectroscopic studies of a nanostructured silicon–perovskite interface
Roberto Gonzalez-Rodriguez
1
,
Viviana C P Costa
1, 2, 3, 4, 5
,
Geraud Delport
6
,
Géraud Delport
7, 8, 9, 10
,
Kyle Frohna
6, 7, 8, 9, 10
,
Robert E. Hoye
8, 10, 11, 12, 13
,
Samuel D. Stranks
6, 7, 8, 9, 10, 14, 15
,
Jeffery L. Coffer
1, 2, 3, 4, 5
2
Department of Chemistry and Biochemistry
4
Fort Worth
|
5
Usa
|
7
Cavendish Laboratory
9
Cambridge CB3 0HE
10
UK
|
12
Department of Materials Science and Metallurgy
13
Cambridge CB 3 0FS
15
Department of Chemical Engineering & Biotechnology
Publication type: Journal Article
Publication date: 2020-01-31
scimago Q1
wos Q1
SJR: 1.245
CiteScore: 9.9
Impact factor: 5.1
ISSN: 20403364, 20403372
PubMed ID:
32031192
General Materials Science
Abstract
While extensively investigated in thin film form for energy materials applications, this work investigates the formation of APbBr3 structures (A = CH3NH3+ (MA), Cs+) in silicon and oxidized silicon nanotubes (SiNTs) with varying inner diameter. We carefully control the extent of oxidation of the nanotube host and correlate the relative Si/Si oxide content in a given nanotube host with the photoluminescence quantum efficiency (PLQE) of the perovskite. Complementing these measurements is an evaluation of average PL lifetimes of a given APbBr3 nanostructure, as evaluated by time-resolved confocal photoluminescence measurements. Increasing Si (decreasing oxide) content in the nanotube host results in a sensitive reduction of MAPbBr3 PLQE, with a concomitant decrease in average lifetime (τave). We interpret these observations in terms of decreased defect passivation by a lower concentration of oxide species surrounding the perovskite. In addition, we show that the use of selected nanotube templates leads to more stable perovskite PL in air over time (weeks). Taken in concert, such fundamental observations have implications for interfacial carrier interactions in tandem Si/perovskite photovoltaics.
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7
Total citations:
7
Citations from 2025:
2
(28.58%)
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Gonzalez-Rodriguez R. et al. Structural and spectroscopic studies of a nanostructured silicon–perovskite interface // Nanoscale. 2020. Vol. 12. No. 7. pp. 4498-4505.
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Gonzalez-Rodriguez R., Costa V. C. P., Delport G., Delport G., Frohna K., Hoye R. E., Stranks S. D., Coffer J. L. Structural and spectroscopic studies of a nanostructured silicon–perovskite interface // Nanoscale. 2020. Vol. 12. No. 7. pp. 4498-4505.
Cite this
RIS
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TY - JOUR
DO - 10.1039/c9nr09622a
UR - https://xlink.rsc.org/?DOI=C9NR09622A
TI - Structural and spectroscopic studies of a nanostructured silicon–perovskite interface
T2 - Nanoscale
AU - Gonzalez-Rodriguez, Roberto
AU - Costa, Viviana C P
AU - Delport, Geraud
AU - Delport, Géraud
AU - Frohna, Kyle
AU - Hoye, Robert E.
AU - Stranks, Samuel D.
AU - Coffer, Jeffery L.
PY - 2020
DA - 2020/01/31
PB - Royal Society of Chemistry (RSC)
SP - 4498-4505
IS - 7
VL - 12
PMID - 32031192
SN - 2040-3364
SN - 2040-3372
ER -
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BibTex (up to 50 authors)
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@article{2020_Gonzalez-Rodriguez,
author = {Roberto Gonzalez-Rodriguez and Viviana C P Costa and Geraud Delport and Géraud Delport and Kyle Frohna and Robert E. Hoye and Samuel D. Stranks and Jeffery L. Coffer},
title = {Structural and spectroscopic studies of a nanostructured silicon–perovskite interface},
journal = {Nanoscale},
year = {2020},
volume = {12},
publisher = {Royal Society of Chemistry (RSC)},
month = {jan},
url = {https://xlink.rsc.org/?DOI=C9NR09622A},
number = {7},
pages = {4498--4505},
doi = {10.1039/c9nr09622a}
}
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MLA
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Gonzalez-Rodriguez, Roberto, et al. “Structural and spectroscopic studies of a nanostructured silicon–perovskite interface.” Nanoscale, vol. 12, no. 7, Jan. 2020, pp. 4498-4505. https://xlink.rsc.org/?DOI=C9NR09622A.
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