Giles E Eperon
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Explore the profile of Giles E Eperon including associated specialties, affiliations and a list of published articles.
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30
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2716
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Recent Articles
1.
Bowman A, Lang F, Chiang Y, Jimenez-Solano A, Frohna K, Eperon G, et al.
ACS Energy Lett
. 2021 Feb;
6(2):612-620.
PMID: 33614966
Perovskite-based tandem solar cells are of increasing interest as they approach commercialization. Here we use experimental parameters from optical spectroscopy measurements to calculate the limiting efficiency of perovskite-silicon and all-perovskite...
2.
Moot T, Werner J, Eperon G, Zhu K, Berry J, McGehee M, et al.
Adv Mater
. 2020 Nov;
32(50):e2003312.
PMID: 33175442
Metal halide perovskites (MHPs) have transfixed the photovoltaic (PV) community due to their outstanding and tunable optoelectronic properties coupled to demonstrations of high-power conversion efficiencies (PCE) at a range of...
3.
Eperon G, Jedlicka E, Ginger D
J Phys Chem Lett
. 2017 Dec;
9(1):104-109.
PMID: 29256619
We use time-resolved photoluminescence measurements to determine the biexciton Auger recombination rate in both hybrid organic-inorganic and fully inorganic halide perovskite nanocrystals as a function of nanocrystal volume. We find...
4.
Pockett A, Eperon G, Sakai N, Snaith H, Peter L, Cameron P
Phys Chem Chem Phys
. 2017 Feb;
19(8):5959-5970.
PMID: 28177002
Perovskite solar cells (PSC) are shown to behave as coupled ionic-electronic conductors with strong evidence that the ionic environment moderates both the rate of electron-hole recombination and the band offsets...
5.
Eperon G, Leijtens T, Bush K, Prasanna R, Green T, Wang J, et al.
Science
. 2016 Nov;
354(6314):861-865.
PMID: 27856902
We demonstrate four- and two-terminal perovskite-perovskite tandem solar cells with ideally matched band gaps. We develop an infrared-absorbing 1.2-electron volt band-gap perovskite, FACsSnPbI, that can deliver 14.8% efficiency. By combining...
6.
Eperon G, Moerman D, Ginger D
ACS Nano
. 2016 Oct;
10(11):10258-10266.
PMID: 27749044
We use high-resolution, spatially resolved, laser beam induced current, confocal photoluminescence, and photoconductive atomic force microscopy (pcAFM) measurements to correlate local solar cell performance with spatially heterogeneous local material properties...
7.
Milot R, Eperon G, Green T, Snaith H, Johnston M, Herz L
J Phys Chem Lett
. 2016 Oct;
7(20):4178-4184.
PMID: 27715054
Hybrid metal-halide perovskites have potential as cost-effective gain media for laser technology because of their superior optoelectronic properties. Although lead-halide perovskites have been most widely studied to date, tin-based perovskites...
8.
Milot R, Sutton R, Eperon G, Haghighirad A, Martinez Hardigree J, Miranda L, et al.
Nano Lett
. 2016 Oct;
16(11):7001-7007.
PMID: 27689536
Hybrid metal-halide perovskites are promising new materials for use in solar cells; however, their chemical stability in the presence of moisture remains a significant drawback. Quasi two-dimensional (2D) perovskites that...
9.
Wright A, Verdi C, Milot R, Eperon G, Perez-Osorio M, Snaith H, et al.
Nat Commun
. 2016 May;
7.
PMID: 27225329
Phonon scattering limits charge-carrier mobilities and governs emission line broadening in hybrid metal halide perovskites. Establishing how charge carriers interact with phonons in these materials is therefore essential for the...
10.
McMeekin D, Sadoughi G, Rehman W, Eperon G, Saliba M, Horantner M, et al.
Science
. 2016 Jan;
351(6269):151-5.
PMID: 26744401
Metal halide perovskite photovoltaic cells could potentially boost the efficiency of commercial silicon photovoltaic modules from ∼20 toward 30% when used in tandem architectures. An optimum perovskite cell optical band...