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  4. Defect Passivation via a Graded Fullerene Heterojunction in Low-Bandgap Pb-Sn Binary Perovskite Photovoltaics
 
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Defect Passivation via a Graded Fullerene Heterojunction in Low-Bandgap Pb-Sn Binary Perovskite Photovoltaics

Journal
ACS Energy Letters
Journal Volume
2
Journal Issue
11
Pages
2531-2539
Date Issued
2017
Author(s)
Rajagopal A.
Liang P.-W.
Chueh C.-C.
Yang Z.
Jen A.K.-Y.
CHU-CHEN CHUEH  
DOI
10.1021/acsenergylett.7b00847
URI
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85033584988&doi=10.1021%2facsenergylett.7b00847&partnerID=40&md5=cec5936bb23fc825cb0b10689804fc43
https://scholars.lib.ntu.edu.tw/handle/123456789/431907
Abstract
Development of low-bandgap (∼1.2 eV) Pb–Sn binary perovskites is exciting and has recently gained immense attention because of their high photovoltages, lowered Pb toxicity, and pivotal role in realizing perovskite tandem solar cells. Defect passivation in this class of perovskite alloys has immense potential to further reduce the photovoltage deficit but is relatively unexplored. Here, we investigate and report the passivation of defect sites in low-bandgap CH3NH3Pb0.5Sn0.5I3 perovskite through the incorporation of fluoroalkyl-substituted fullerene (DF-C60) via a graded heterojunction (GHJ) structure. Graded distribution of DF-C60 successfully reduced the number of trap sites, and the resultant films had characteristically lower Urbach energy, dominant bimolecular recombination, and higher surface/bulk recombination resistance. The improved optoelectronic quality of films with GHJ structure was reflected in improved performance for corresponding photovoltaic devices, with the best PCE up to 15.61% and a remarkably high Voc of 0.89 V. A Voc of ∼92% of the Shockley–Queisser (SQ) limit achieved here is comparable to that of state-of-the-art inorganic technologies and is the best among perovskite solar cells (PVSCs) to date. Additionally, through stability studies, we find that though GHJ with DF-C60 can slow down degradation due to moisture penetration, the oxidative susceptibility of Sn in binary perovskites sharply constraints overall stability.
SDGs

[SDGs]SDG7

Publisher
American Chemical Society
Type
journal article

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