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1
X-ray Scintillation in Lead Halide Perovskite Crystals
Published 2017“…Thanks to the presence of heavy atoms, solution-grown hybrid lead halide perovskite single crystals exhibit short X-ray absorption length and excellent detection efficiency. …”
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2
Amplified spontaneous emission threshold dependence on determination method in dye-doped polymer and lead halide perovskite waveguides
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3
Perturbation-induced seeding and crystallization of hybrid perovskites over surface-modified substrates for optoelectronic devices
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4
Potassium acetate-based treatment for thermally co-evaporated perovskite solar cells
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5
Improving the performance of carbon-based perovskite solar modules (70 cm2) by incorporating cesium halide in mesoporous TiO2
Published 2021“…Here, triple-layered scaffolds made of cesium halide-modified TiO2 exhibit efficient charge extraction as confirmed by enhanced photoluminescence quenching and inhibit the UV-activated degradation processes of perovskite, leading to an enhanced operational stability. …”
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6
Excellent intrinsic long‐term thermal stability of co‐evaporated MAPbI₃ solar cells at 85 °C
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7
Charge carrier dynamics in co-evaporated MAPbI₃ with a gradient in composition
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8
Designing efficient energy funneling kinetics in ruddlesden-popper perovskites for high-performance light-emitting diodes
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9
Efficient and ambient-air-stable solar cell with highly oriented 2D@3D perovskites
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10
Thermal evaporation and hybrid deposition of perovskite solar cells and mini-modules
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11
Solution-processed, highly crystalline, and oriented MAPbI₃ thin films by engineering crystal-growth kinetics
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12
Realizing reduced imperfections via quantum dots interdiffusion in high efficiency perovskite solar cells
Published 2022“…Herein, a solid-state interdiffusion process using multi-cation hybrid halide perovskite quantum dots (QDs) is introduced as a strategy to heal the ionic defects at the surface and GBs. …”
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13
Interfacial passivation with 4-chlorobenzene sulfonyl chloride for stable and efficient planar perovskite solar cells
Published 2022“…Here, we demonstrate the importance of passivating undercoordinated halide ions in minimizing carrier losses at the perovskite/spiro-OMeTAD interface. 4-Chlorobenzene sulfonyl chloride (CBSC) has been utilized as a Lewis acid passivation material. …”
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14
Nitrogen doped cuprous oxide as low cost hole-transporting material for perovskite solar cells
Published 2020“…Therefore, we explored the use of sputtered nitrogen-doped Cu2O directly on halide-perovskite as a HTM. With a thin interfacial layer, efficiency of 15.73% was achieved. …”
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15
Brightness enhancement in pulsed-operated perovskite light-emitting transistors
Published 2021“…Ionic screening and organic cation polarization effects typical of metal-halide perovskites, however, critically affect PeLEFET efficiency and reliability. …”
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16
Recovery of shallow charge-trapping defects in CsPbX3 nanocrystals through specific binding and encapsulation with amino-functionalized silanes
Published 2020“…The proposed surface-repair strategy can be extended to other halide compositions, yielding similarly effective 4-fold and 2-fold PL enhancements for CsPbCl3 and CsPbI3 NCs, respectively. …”
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17
Perovskite multiple quantum well superlattices: potentials and challenges
Published 2024“…The rapid advancement of metal halide perovskites has sparked interest in strategies for manipulating their optoelectronic characteristics. …”
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18
Enhancing FAPbI3 perovskite solar cell performance with a methanesulfonate-based additive
Published 2024“…We present a strategy to simultaneously enhance the efficiency and stability of perovskite solar cells by introducing a new pseudo-halide additive based on formamidinium methanesulfonate (FAMeSf). …”
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19
Designing the perovskite structural landscape for efficient blue emission
Published 2020“…The poor performance is associated with, among other factors, halide segregation in bromide-chloride materials and energy funneling to lowest bandgaps in multilayered Ruddlesden–Popper (RP) systems. …”
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20
Additive selection strategy for high performance perovskite photovoltaics
Published 2020“…However, the role of the additional cations as well as the mixed halides is yet to be fully understood. In this work, we investigate the role of different additives including group I alkali metal cations (K, Rb, Cs and NH4) and halide anions (Br and I) on double-cation perovskites, i.e., [(MAPbBr3)0.15(FAPbI3)0.85]. …”
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