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Near‐Infrared Light Responsive TiO2 for Efficient Solar Energy Utilization
L Jiang, S Zhou, J Yang, H Wang, H Yu… - Advanced Functional …, 2022 - Wiley Online Library
TiO2, as a benchmark in the field of ultraviolet photocatalysis, is one of the most widely used
semiconductor photocatalysts. However, its inherent drawbacks, including wide bandgap …
semiconductor photocatalysts. However, its inherent drawbacks, including wide bandgap …
Core/shell quantum dots solar cells
Semiconductor nanocrystals, the so‐called quantum dots (QDs), exhibit versatile optical and
electrical properties. However, QDs possess high density of surface defects/traps due to the …
electrical properties. However, QDs possess high density of surface defects/traps due to the …
Cation-exchange-upgraded nanostructures for photocatalysts
The conversion of solar energy by photocatalysis exhibits great potential for sustainable
energy production and environmental remediation. Achieving high-performance …
energy production and environmental remediation. Achieving high-performance …
Harnessing the properties of colloidal quantum dots in luminescent solar concentrators
Luminescent solar concentrators (LSCs) can serve as large-area sunlight collectors, are
suitable for applications in high-efficiency and cost-effective photovoltaics (PVs), and …
suitable for applications in high-efficiency and cost-effective photovoltaics (PVs), and …
Heavy‐Metal‐Free Colloidal Quantum Dots: Progress and Opportunities in Solar Technologies
Colloidal quantum dots (QDs) hold great promise as building blocks in solar technologies
owing to their remarkable photostability and adjustable properties through the rationale …
owing to their remarkable photostability and adjustable properties through the rationale …
Efficient and stable tandem luminescent solar concentrators based on carbon dots and perovskite quantum dots
Luminescent solar concentrator (LSC) can serve as large-area sunlight collectors, suitable
for applications in building-integrated high-efficiency and low-cost photovoltaics. Inorganic …
for applications in building-integrated high-efficiency and low-cost photovoltaics. Inorganic …
Tailoring eco‐friendly colloidal quantum dots for photoelectrochemical hydrogen generation
A photoelectrochemical (PEC) cell is able to realize effective solar‐to‐hydrogen energy
conversion from water by using the semiconductor photoelectrode. Semiconducting colloidal …
conversion from water by using the semiconductor photoelectrode. Semiconducting colloidal …
Role of copper do** in heavy metal‐free InP/ZnSe core/shell quantum dots for highly efficient and stable photoelectrochemical cell
H Zhao, X Li, M Cai, C Liu, Y You… - Advanced Energy …, 2021 - Wiley Online Library
As emerging eco‐friendly alternatives to traditional Cd/Pb‐based quantum dots (QDs),
InP/ZnSe (S) core/shell QDs have demonstrated huge potential in light‐emitting …
InP/ZnSe (S) core/shell QDs have demonstrated huge potential in light‐emitting …
Perovskite quantum dots integrated in large-area luminescent solar concentrators
Luminescent solar concentrators (LSCs) are considered a promising technology to reduce
the cost of electricity by decreasing the use of expensive photovoltaic materials, such as …
the cost of electricity by decreasing the use of expensive photovoltaic materials, such as …
Quantum dots‐based photoelectrochemical hydrogen evolution from water splitting
Solar‐driven photoelectrochemical (PEC) hydrogen evolution is a promising and
sustainable approach to convert solar energy into a fuel that can be stored. Semiconductor …
sustainable approach to convert solar energy into a fuel that can be stored. Semiconductor …