2020
DOI: 10.1016/j.solener.2020.04.021
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Electrospray deposited MoS2 nanosheets as an electron transporting material for high efficiency and stable perovskite solar cells

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Cited by 29 publications
(10 citation statements)
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“…[208] Recently, Mahmood et al used MoS 2 nanosheets as an ETM for PSCs by the electrospray deposition method. [209] Compared with the hydrothermal synthesis method, the MoS 2 nanosheets fabricated by the electrospray deposition method had more uniform surface coverage and a larger surface contact area with the perovskite, resulting in rapid carrier extraction in the vertical direction and a PCE of 16.17%. After surface functionalization, the semiconductor property of MoS 2 can be changed from an n type to a p type.…”
Section: Molybdenum Disulfidementioning
confidence: 99%
“…[208] Recently, Mahmood et al used MoS 2 nanosheets as an ETM for PSCs by the electrospray deposition method. [209] Compared with the hydrothermal synthesis method, the MoS 2 nanosheets fabricated by the electrospray deposition method had more uniform surface coverage and a larger surface contact area with the perovskite, resulting in rapid carrier extraction in the vertical direction and a PCE of 16.17%. After surface functionalization, the semiconductor property of MoS 2 can be changed from an n type to a p type.…”
Section: Molybdenum Disulfidementioning
confidence: 99%
“…), metal suldes (MoS, 72,73 CdS, [74][75][76] In 2 S 3 , 73 ), GaN 79 and CdSe; 80,81 and InGaZnO 4 . 82 However, some drawbacks still exist, like low PCE, poor interfacial contact, or high energy consumption.…”
Section: Feimentioning
confidence: 99%
“…properties. 72,77,[288][289][290][291] MXenes are promising 2D materials that process high electron mobility and less light absorption in the visible range. Their general chemical formula is M n+1 X n T x , in which M displays a type of early transition metal, X usually is a carbon and/or a nitrogen atom, and T is the surface termination group (usually oxygen-and/or uorine-containing groups).…”
Section: Interface Modicationmentioning
confidence: 99%
“…By virtue of their high carrier mobility for efficient charge transport 282,283 , tunable work function via composition tuning or surface functionalization or elemental doping 173,284 , and solution processability 285−287 , TMD has been used as either a standalone charge transporting layer or a complementary interlayer in perovskite solar cells (PSCs). For ease of comparison, Table 5 shows the main performance parameters of perovskite/TMDs-based solar cells, which are discussed further in detail.…”
Section: Solar Cellsmentioning
confidence: 99%