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Emerging trends of carbon‐based quantum dots: nanoarchitectonics and applications
Carbon‐based quantum dots (QDs) have emerged as a fascinating class of advanced
materials with a unique combination of optoelectronic, biocompatible, and catalytic …
materials with a unique combination of optoelectronic, biocompatible, and catalytic …
Recent advances on graphene quantum dots: from chemistry and physics to applications
Graphene quantum dots (GQDs) that are flat 0D nanomaterials have attracted increasing
interest because of their exceptional chemicophysical properties and novel applications in …
interest because of their exceptional chemicophysical properties and novel applications in …
Recent progress of heterojunction ultraviolet photodetectors: materials, integrations, and applications
Ultraviolet photodetectors (UV PDs) with “5S”(high sensitivity, high signal‐to‐noise ratio,
excellent spectrum selectivity, fast speed, and great stability) have been proposed as …
excellent spectrum selectivity, fast speed, and great stability) have been proposed as …
Current and future perspectives of carbon and graphene quantum dots: From synthesis to strategy for building optoelectronic and energy devices
Carbon quantum dots (CQDs) and graphene quantum dots (GQDs) are new carbon-based
nanomaterials with unique electronic, optical, and physicochemical properties. Both CQDs …
nanomaterials with unique electronic, optical, and physicochemical properties. Both CQDs …
Enhancing the photoelectric performance of photodetectors based on metal oxide semiconductors by charge‐carrier engineering
Semiconductor‐based photodetectors (PDs) convert light signals into electrical signals via
the photoelectric effect, which involves the generation, separation, and transportation of the …
the photoelectric effect, which involves the generation, separation, and transportation of the …
Advances in preparation, mechanism and applications of graphene quantum dots/semiconductor composite photocatalysts: A review
C Cheng, Q Liang, M Yan, Z Liu, Q He, T Wu… - Journal of hazardous …, 2022 - Elsevier
Due to the low efficiency of single-component nano materials, there are more and more
studies on high-efficiency composites. As zero dimensional (0D) non-metallic semiconductor …
studies on high-efficiency composites. As zero dimensional (0D) non-metallic semiconductor …
From pristine to heteroatom‐doped graphene quantum dots: an essential review and prospects for future research
Graphene quantum dots (GQDs) are carbon‐based zero‐dimensional materials that have
received considerable scientific interest due to their exceptional optical, electrical, and …
received considerable scientific interest due to their exceptional optical, electrical, and …
Deciphering interfacial charge transfer mechanisms in electrochemical energy systems through impedance spectroscopy
Electrochemical energy conversion and storage systems have become an integral part
towards a sustainable future, where the goal is to achieve high energy efficiency for each …
towards a sustainable future, where the goal is to achieve high energy efficiency for each …
Colloidal quantum dots: synthesis, composition, structure, and emerging optoelectronic applications
J Zhang, S Zhang, Y Zhang… - Laser & Photonics …, 2023 - Wiley Online Library
In recent decades, quantum dots (QDs) with tunable bandgap, large absorption coefficient,
high quantum yield, multiexciton effect, and easy solution processing have unparalleled …
high quantum yield, multiexciton effect, and easy solution processing have unparalleled …
Graphene quantum dots by eco-friendly green synthesis for electrochemical sensing: Recent advances and future perspectives
The continuous decrease in the availability of fossil resources, along with an evident energy
crisis, and the growing environmental impact due to their use, has pushed scientific research …
crisis, and the growing environmental impact due to their use, has pushed scientific research …