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Exploring the potential of colloidal quantum dots for near‐infrared to short‐wavelength infrared applications
Colloidal quantum dots (CQDs) are powerful components for next‐generation infrared (IR)
optoelectronic devices owing to their confinement‐based bandgap‐tunability, cost …
optoelectronic devices owing to their confinement‐based bandgap‐tunability, cost …
Surface Engineering Enables Efficient AgBiS2 Quantum Dot Solar Cells
Surface ligand chemistry is vital to control the synthesis, diminish surface defects, and
improve the electronic coupling of quantum dots (QDs) toward emerging applications in …
improve the electronic coupling of quantum dots (QDs) toward emerging applications in …
Thin film AgBiS2 solar cells with over 10% power conversion efficiency enabled by vapor-assisted solution process treatment
X Li, H Yu, X Ma, Z Liu, J Huang, Y Shen… - Chemical Engineering …, 2024 - Elsevier
Recently, thin film photovoltaic solar energy has grown rapidly with new materials for
achieving high conversion efficiency and long-term stability. Especially, silver bismuth …
achieving high conversion efficiency and long-term stability. Especially, silver bismuth …
[HTML][HTML] Advancing Silver Bismuth Sulfide Quantum Dots for Practical Solar Cell Applications
Colloidal quantum dots (CQDs) show unique properties that distinguish them from their bulk
form, the so-called quantum confinement effects. This feature manifests in tunable size …
form, the so-called quantum confinement effects. This feature manifests in tunable size …
Pb‐Free Infrared Harvesting Colloidal Quantum Dot Solar Cells Using n‐p Homojunction Architecture
Y Park, J Kim, M Jeong, D Shin, J Jung… - Advanced Energy …, 2024 - Wiley Online Library
Harvesting infrared (IR) sunlight using colloidal quantum dots (CQDs) holds significant
promise for optoelectronic devices including photovoltaics (PVs) and self‐powered sensors …
promise for optoelectronic devices including photovoltaics (PVs) and self‐powered sensors …
Silver telluride colloidal quantum dot solid for fast extended shortwave infrared photodetector
Extended shortwave infrared (eSWIR) photodetectors that employ solution‐processable
semiconductors have attracted attention for use in applications such as ranging, night vision …
semiconductors have attracted attention for use in applications such as ranging, night vision …
Emerging Bi‐Based Multicationic Ternary Chalcogenides as Promising Photoabsorbers for Solar Cells
Bismuth‐based multicationic chalcogenide solar cells of class ABiX2 (A–Ag, Cu; X–S, Se)
have attracted substantial interest within the photovoltaic research community mainly due to …
have attracted substantial interest within the photovoltaic research community mainly due to …
Solvent‐Engineering‐Assisted Ligand Exchange Strategy for High‐Efficiency AgBiS2 Quantum Dot Solar Cells
As the initial synthesized colloidal quantum dots (CQDs) are generally capped with
insulating ligands, ligand exchange strategies are essential in the fabrication of CQD films …
insulating ligands, ligand exchange strategies are essential in the fabrication of CQD films …
Suppressing phase segregation in mixed halide CsPbI3-xBrx perovskites by dual passivation using sodium dodecyl sulphate
The phenomenal growth of metal halide perovskites over the last decade makes them
intriguing for next-generation optoelectronic materials. Despite numerous advantages over …
intriguing for next-generation optoelectronic materials. Despite numerous advantages over …
Boosting Open-Circuit Voltage of AgBiS2 Quantum Dot Solar Cells through Post-treatment Passivation
W Yang, T Sun, X Ma, H Yu, H Shi, Y Hu… - ACS Energy …, 2024 - ACS Publications
Silver bismuth disulfide (AgBiS2) colloidal quantum dots (CQDs) have emerged as attractive
absorbers in ecofriendly photovoltaics due to their high absorption coefficient and suitable …
absorbers in ecofriendly photovoltaics due to their high absorption coefficient and suitable …