Lead Iodide Perovskite Sensitized All-Solid-State Submicron Thin Film Mesoscopic Solar Cell with Efficiency Exceeding 9%
Тонкоплёночный мезоскопический солнечный элемент субмикронной толщины на перовските свинцового йодида с твердым электролитом и КПД, превышающим 9%
2012-08-21
SCID: 54.1/z6gcbpjs
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all-solid-state mesoscopic heterojunction solar cellmethylammonium lead iodide (CH3NH3PbI3)power conversion efficiency (PCE) 9.7%spiro-MeOTAD hole conductorsubmicron-thick mesoscopic TiO2 film
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Abstract (AI)
We report on solid-state mesoscopic heterojunction solar cells employing nanoparticles (NPs) of methyl ammonium lead iodide (CH(3)NH(3))PbI(3) as light harvesters. The perovskite NPs were produced by reaction of methylammonium iodide with PbI(2) and deposited onto a submicron-thick mesoscopic TiO(2) film, whose pores were infiltrated with the hole-conductor spiro-MeOTAD. Illumination with standard AM-1.5 sunlight generated large photocurrents (J(SC)) exceeding 17 mA/cm(2), an open circuit photovoltage (V(OC)) of 0.888 V and a fill factor (FF) of 0.62 yielding a power conversion efficiency (PCE) of 9.7%, the highest reported to date for such cells. Femto second laser studies combined with photo-induced absorption measurements showed charge separation to proceed via hole injection from the excited (CH(3)NH(3))PbI(3) NPs into the spiro-MeOTAD followed by electron transfer to the mesoscopic TiO(2) film. The use of a solid hole conductor dramatically improved the device stability compared to (CH(3)NH(3))PbI(3) -sensitized liquid junction cells.
Key Findings
1
Devices achieved photocurrents (JSC) exceeding 17 mA/cm2, open-circuit voltage (VOC) of 0.888 V, fill factor (FF) of 0.62, and power conversion efficiency (PCE) of 9.7%.
2
Femtosecond laser and photo-induced absorption studies indicate charge separation via hole injection from excited CH3NH3PbI3 NPs into spiro-MeOTAD, followed by electron transfer to mesoscopic TiO2.
3
Perovskite NPs were deposited onto submicron-thick mesoscopic TiO2 films infiltrated with the hole conductor spiro-MeOTAD.
4
Solid-state mesoscopic heterojunction solar cells using methylammonium lead iodide (CH3NH3PbI3) nanoparticles as light harvesters were demonstrated.
5
Using a solid hole conductor (spiro-MeOTAD) significantly improved device stability compared to CH3NH3PbI3-sensitized liquid junction cells.
Research Object
All-solid-state submicron-thick mesoscopic solar cell sensitized with methylammonium lead iodide (CH3NH3PbI3) nanoparticles (mesoscopic TiO2 film infiltrated with spiro-MeOTAD)
Research Subject
Photovoltaic performance and charge-separation mechanism of the perovskite-sensitized all-solid-state mesoscopic solar cell (including JSC, VOC, fill factor, PCE, hole injection into spiro-MeOTAD and electron transfer to TiO2, and device stability)
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2012-08-21
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