0000000000115562

AUTHOR

Sofia Masi

showing 9 related works from this author

Preferred Growth Direction by PbS Nanoplatelets Preserves Perovskite Infrared Light Harvesting for Stable, Reproducible, and Efficient Solar Cells

2020

Formamidinium-based perovskite solar cells (PSCs) present the maximum theoretical efficiency of the lead perovskite family. However, formamidinium perovskite exhibits significant degradation in air. The surface chemistry of PbS has been used to improve the formamidinium black phase stability. Here, the use of PbS nanoplatelets with (100) preferential crystal orientation is reported, to potentiate the repercussion on the crystal growth of perovskite grains and to improve the stability of the material and consequently of the solar cells. As a result, a vertical growth of perovskite grains, a stable current density of 23 mA cm(-2), and a stable incident photon to current efficiency in the infr…

Materials sciencePbS nanoplateletsInfraredperovskitesCrystal growth02 engineering and technology010402 general chemistryHIGHLY EFFICIENT01 natural sciencesperovskite stabilityPlanarMetastabilityGeneral Materials ScienceformamidiniumreproducibilityPerovskite (structure)Renewable Energy Sustainability and the Environmentbusiness.industryLATERAL SIZE CONTROLNANOSHEETS021001 nanoscience & nanotechnology0104 chemical sciencesChemistryFormamidiniumPhysics and AstronomyOptoelectronicsDegradation (geology)0210 nano-technologybusinessCurrent densityMICROMETER
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Boosting Long-Term Stability of Pure Formamidinium Perovskite Solar Cells by Ambient Air Additive Assisted Fabrication

2021

Due to the high industrial interest for perovskite-based photovoltaic devices, there is an urgent need to fabricate them under ambient atmosphere, not limited to low relative humidity (RH) conditions. The formamidinium lead iodide (FAPI) perovskite α-black phase is not stable at room temperature and is challenging to stabilize in an ambient environment. In this work, we show that pure FAPI perovskite solar cells (PSCs) have a dramatic increase of device long-term stability when prepared under ambient air compared to FAPI PSCs made under nitrogen, both fabricated with N-methylpyrrolidone (NMP). The T80 parameter, the time in which the efficiency drops to 80% of the initial value, increases f…

atmospheric chemistryMaterials scienceFabricationLetterperovskitesEnergy Engineering and Power Technology02 engineering and technology010402 general chemistry7. Clean energy01 natural sciencesPhase (matter)Materials ChemistryRelative humidityPerovskite (structure)Renewable Energy Sustainability and the EnvironmentPhotovoltaic systemEnergy conversion efficiencystability021001 nanoscience & nanotechnology0104 chemical sciencesFuel TechnologyFormamidiniumChemical engineeringChemistry (miscellaneous)Quantum dotsolar cellsadditives0210 nano-technologyACS Energy Letters
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The role of surface chemical states on the photocatalytic behavior of all-inorganic mixed halide perovskite nanocrystals

2019

Materials scienceNanocrystalChemical engineeringPhotocatalysisSurface chemicalHalidePerovskite (structure)Proceedings of the International Conference on Perovskite Thin Film Photovoltaics and Perovskite Photonics and Optoelectronics
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Light-Induced Formation of Pb3+Paramagnetic Species in Lead Halide Perovskites

2018

Hybrid halide perovskites are soft materials processed at room temperature, revolutionary players in the photovoltaic field. Nowadays, investigation of the nature and role of defects is seen as one of the key challenges toward full comprehension of their behavior and achievement of high device stability under working conditions. We reveal the reversible generation, under illumination, of paramagnetic Pb3+ defects in CH3NH3PbI3, synthesized in ambient conditions, induced by the presence of Pb-O defects in the perovskite structure that may trap photogenerated holes, possibly mediated by the concomitant oxidation and migration of ions. According to the mechanism that we hypothesize, one charge…

Materials Chemistry2506 Metals and AlloysMaterials sciencePerovskites epr esr Pb3+ defects CH3NH3PbI3HalideEnergy Engineering and Power Technology02 engineering and technology010402 general chemistry01 natural scienceslaw.inventionIonChemistry (miscellaneous); Renewable Energy Sustainability and the Environment; Fuel Technology; Energy Engineering and Power Technology; Materials Chemistry2506 Metals and AlloysParamagnetismlawSolar cellMaterials ChemistryPerovskitesRenewable EnergyElectron paramagnetic resonancePerovskite (structure)PhotocurrentSustainability and the EnvironmentRenewable Energy Sustainability and the Environment021001 nanoscience & nanotechnology0104 chemical sciencesFuel TechnologyChemical physicsChemistry (miscellaneous)Light induced0210 nano-technology
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Enabling long-term stable FAPb1-xSrxI3 quantum dots with high optical performance: the effect of Sr2+ doping

2021

Materials sciencebusiness.industryQuantum dotDopingOptoelectronicsbusinessTerm (time)Proceedings of the Internet NanoGe Conference on Nanocrystals
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Continuous-Flow Synthesis of Orange Emitting Sn(II)-Doped CsBr Materials

2021

An ongoing demand toward lead-free all-inorganic cesium metal halide perovskites has presented Sn(II) as an ideal substitute of Pb(II) for applications in optoelectronic devices. The major concern regarding Sn(II) is the instability due to the ambient oxidation to Sn(IV). To expand the scope of traditional perovskite and analogues, herein the synthesis and optical performance of Sn(II)-doped CsBr, a new material formed by interstitial doping of Sn(II) into the CsBr matrix, are reported for the first time. This material is prepared following an antisolvent mediated recrystallization method using a continuous flow reactor, which is beneficial for scaling up the production compared to traditio…

PhotoluminescenceRecrystallization (geology)Materials scienceAnalytical chemistrychemistry.chemical_elementHalideQuantum yield02 engineering and technology010402 general chemistry7. Clean energy01 natural sciencescontinuous flow reactor synthesis CsBr interstitial doping long-term ambient stability photoluminescence quantum yield self-trapped excitonic emissionMetalphotoluminescence quantum yieldlong-term ambient stabilityself-trapped excitonic emissionPerovskite (structure)Dopingcontinuous flow reactor synthesis021001 nanoscience & nanotechnologyAtomic and Molecular Physics and Optics0104 chemical sciencesElectronic Optical and Magnetic Materialschemistryvisual_artCaesiumvisual_art.visual_art_mediumCsBrinterstitial doping0210 nano-technology
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Improving Long Term Stability of Pure Formamidinium Perovskite Solar Cells by Ambient Air Additive Assisted Fabrication

2021

FormamidiniumMaterials scienceFabricationChemical engineeringTerm (time)Perovskite (structure)Ambient airProceedings of the nanoGe Fall Meeting 2021
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Engineering Sr-doping for enabling long-term stable FAPb1xSrxI3 quantum dots with 100% photoluminescence quantum yield

2021

The Pb substitution in quantum dots (PQDs) with lesser toxic metals has been widely searched to be environmentally friendly, and be of comparable or improved performance compared to the lead-perovskite. However, the chemical nature of the lead substitute influences the incorporation mechanism into PQDs, which has not been explored in depth. In this work, we analyzed Sr-doping-induced changes in FAPbI3 perovskites by studying the optical, structural properties and chemical environment of FAPb1−xSrxI3 PQDs. The substitution of Pb by 7 at% Sr allows us to achieve FAPb1−xSrxI3 PQDs with 100% PLQY, high stability for 8 months under a relative humidity of 40–50%, and T80 = 6.5 m…

PhotoluminescenceMaterials scienceDopingengineering Sr-dopingQuantum yield02 engineering and technologyGeneral Chemistry010402 general chemistry021001 nanoscience & nanotechnologyPhotochemistry01 natural sciencesenabling long-term stable0104 chemical sciencesImproved performanceQuantum dotphotoluminescence quantum yieldMaterials Chemistry0210 nano-technology
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Unravelling the Photocatalytic Behavior of All-Inorganic Mixed Halide Perovskites: The Role of Surface Chemical States

2019

Within the most mesmerizing materials in the world of optoelectronics, mixed halide perovskites (MHPs) have been distinguished because of the tunability of their optoelectronic properties, balancing both the light-harvesting efficiency and the charge extraction into highly efficient solar devices. This feature has drawn the attention of analogous hot topics as photocatalysis for carrying out more efficiently the degradation of organic compounds. However, the photo-oxidation ability of perovskite depends not only on its excellent light-harvesting properties but also on the surface chemical environment provided during its synthesis. Accordingly, we studied the role of surface chemical states …

photocatalytic activityMaterials scienceIodideHalide02 engineering and technology010402 general chemistry01 natural sciences7. Clean energyiodide vacanciesSurface chemicalGeneral Materials Sciencehot-injectionPerovskite (structure)chemistry.chemical_classificationanion-exchangedegradation pathwaysIon exchangesurface chemical states021001 nanoscience & nanotechnology0104 chemical sciencesNanocrystalChemical engineeringchemistryPhotocatalysisDegradation (geology)0210 nano-technologysuperoxide ions
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