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2D II–VI semiconductor nanoplatelets: From material synthesis to optoelectronic integration
The field of colloidal synthesis of semiconductors emerged 40 years ago and has reached a
certain level of maturity thanks to the use of nanocrystals as phosphors in commercial …
certain level of maturity thanks to the use of nanocrystals as phosphors in commercial …
Charge transfer from quantum-confined 0D, 1D, and 2D nanocrystals
The properties of colloidal quantum-confined semiconductor nanocrystals (NCs), including
zero-dimensional (0D) quantum dots, 1D nanorods, 2D nanoplatelets, and their …
zero-dimensional (0D) quantum dots, 1D nanorods, 2D nanoplatelets, and their …
Anchoring single Pt atoms and black phosphorene dual co-catalysts on CdS nanospheres to boost visible-light photocatalytic H2 evolution
Co-catalysts play a crucial role in semiconductor-based artificial photosynthesis and
stabilizing co-catalysts on heterojunction photocatalysts is essential for achieving high …
stabilizing co-catalysts on heterojunction photocatalysts is essential for achieving high …
Overcoming the exciton binding energy in two-dimensional perovskite nanoplatelets by attachment of conjugated organic chromophores
In this work we demonstrate a novel approach to achieve efficient charge separation in
dimensionally and dielectrically confined two-dimensional perovskite materials. Two …
dimensionally and dielectrically confined two-dimensional perovskite materials. Two …
Z‐Scheme Strategy in Polymeric Graphitic C3N5/CdS Core–Shell Heterojunction Drives Long‐Lived Carriers Separation for Robust Visible‐Light Hydrogen …
X Wang, K Wu, W Cao, K Rui, W Wang… - Advanced Materials …, 2023 - Wiley Online Library
The intrinsic charge carriers' recombination and excited states decay greatly suppress the
active species survival and photo (electro) catalytic performance. Inspired by Z‐scheme …
active species survival and photo (electro) catalytic performance. Inspired by Z‐scheme …
Surface passivation extends single and biexciton lifetimes of InP quantum dots
Indium phosphide quantum dots (InP QDs) are nontoxic nanomaterials with potential
applications in photocatalytic and optoelectronic fields. Post-synthetic treatments of InP QDs …
applications in photocatalytic and optoelectronic fields. Post-synthetic treatments of InP QDs …
The Impact of Partial Carrier Confinement on Stimulated Emission in Strongly Confined Perovskite Nanocrystals
Semiconductor lead halide perovskites are excellent candidates for realizing low threshold
light amplification due to their tunable and highly efficient luminescence, ease of processing …
light amplification due to their tunable and highly efficient luminescence, ease of processing …
Ultrafast hole relaxation dynamics in quantum dots revealed by two-dimensional electronic spectroscopy
Elucidating the population dynamics of correlated electron-hole pairs (bound excitons) in
semiconducting quantum dots (QDs) is key for develo** our fundamental understanding of …
semiconducting quantum dots (QDs) is key for develo** our fundamental understanding of …
Interrogating light-initiated dynamics in metal–organic frameworks with time-resolved spectroscopy
Time-resolved spectroscopy is an essential part of both fundamental and applied chemical
research. Such techniques access light-initiated dynamics on time scales ranging from …
research. Such techniques access light-initiated dynamics on time scales ranging from …
Electrochemical p-Do** of CsPbBr3 Perovskite Nanocrystals
Lead halide perovskite nanocrystals have drawn attention as active light-absorbing or-
emitting materials for opto-electronic applications due to their facile synthesis, intrinsic defect …
emitting materials for opto-electronic applications due to their facile synthesis, intrinsic defect …