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Emerging 2D materials beyond mxenes and TMDs: Transition metal carbo-chalcogenides
The discovery of graphene sparked significant interest in 2D materials, which present an
ultra-thin layered structure with high anisotropy and adjustable energy-band structure …
ultra-thin layered structure with high anisotropy and adjustable energy-band structure …
Tailor‐Engineered 2D Cocatalysts: Harnessing Electron–Hole Redox Center of 2D g‐C3N4 Photocatalysts toward Solar‐to‐Chemical Conversion and …
Sparked by natural photosynthesis, solar photocatalysis using metal‐free graphitic carbon
nitride (g‐C3N4) with appealing electronic structure has turned up as the most captivating …
nitride (g‐C3N4) with appealing electronic structure has turned up as the most captivating …
Electronic modulation of non‐van der waals 2D electrocatalysts for efficient energy conversion
The exploration of efficient electrocatalysts for energy conversion is important for green
energy development. Owing to their high surface areas and unusual electronic structure, 2D …
energy development. Owing to their high surface areas and unusual electronic structure, 2D …
Wide voltage aqueous asymmetric supercapacitors: advances, strategies, and challenges
Asymmetric supercapacitors (ASCs) can substantially broaden their working voltage range,
benefiting from the advantages of both cathode and anode while breaking through the …
benefiting from the advantages of both cathode and anode while breaking through the …
Recent advances, properties, fabrication and opportunities in two-dimensional materials for their potential sustainable applications
Abstract Elemental two-dimensional (2D) materials, characterized by unique chemical,
physical, and electrical characteristics, now offer intriguing energy and catalysis application …
physical, and electrical characteristics, now offer intriguing energy and catalysis application …
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 …
Solution-processed two-dimensional materials for next-generation photovoltaics
In the ever-increasing energy demand scenario, the development of novel photovoltaic (PV)
technologies is considered to be one of the key solutions to fulfil the energy request. In this …
technologies is considered to be one of the key solutions to fulfil the energy request. In this …
Two-dimensional metal nanomaterials: synthesis, properties, and applications
As one unique group of two-dimensional (2D) nanomaterials, 2D metal nanomaterials have
drawn increasing attention owing to their intriguing physiochemical properties and broad …
drawn increasing attention owing to their intriguing physiochemical properties and broad …
Conductive metal–organic frameworks with extra metallic sites as an efficient electrocatalyst for the hydrogen evolution reaction
H Huang, Y Zhao, Y Bai, F Li, Y Zhang… - Advanced …, 2020 - Wiley Online Library
The 2D conductive metal–organic frameworks (MOFs) are expected to be an ideal
electrocatalyst due to their high utilization of metal atoms. Exploring a new conjugated …
electrocatalyst due to their high utilization of metal atoms. Exploring a new conjugated …
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 …