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2D heterostructures for ubiquitous electronics and optoelectronics: principles, opportunities, and challenges
A grand family of two-dimensional (2D) materials and their heterostructures have been
discovered through the extensive experimental and theoretical efforts of chemists, material …
discovered through the extensive experimental and theoretical efforts of chemists, material …
Raman spectroscopy of graphene-based materials and its applications in related devices
Graphene-based materials exhibit remarkable electronic, optical, and mechanical
properties, which has resulted in both high scientific interest and huge potential for a variety …
properties, which has resulted in both high scientific interest and huge potential for a variety …
Trifluoroacetate induced small-grained CsPbBr3 perovskite films result in efficient and stable light-emitting devices
Quantum efficiencies of organic-inorganic hybrid lead halide perovskite light-emitting
devices (LEDs) have increased significantly, but poor device operational stability still …
devices (LEDs) have increased significantly, but poor device operational stability still …
[HTML][HTML] Production of large-area 2D materials for high-performance photodetectors by pulsed-laser deposition
Our review provides a comprehensive overview on the latest progress in pulsed-laser
deposition (PLD) of 2D layered materials (2DLMs), and its application in photoelectric …
deposition (PLD) of 2D layered materials (2DLMs), and its application in photoelectric …
Graphene hybrid structures for integrated and flexible optoelectronics
Graphene (Gr) has many unique properties including gapless band structure, ultrafast
carrier dynamics, high carrier mobility, and flexibility, making it appealing for ultrafast …
carrier dynamics, high carrier mobility, and flexibility, making it appealing for ultrafast …
Status and outlook of metal–inorganic semiconductor–metal photodetectors
Metal–inorganic semiconductor–metal photodetectors (MSM‐PDs) have received great
attention in many areas, such as optical fiber communication, sensing, missile guidance …
attention in many areas, such as optical fiber communication, sensing, missile guidance …
Nanostructures/graphene/silicon junction‐based high‐performance photodetection systems: progress, challenges, and future trends
Graphene, due to its exceptional optoelectronic characteristics, high charge carrier mobility,
wide absorption band, strong light‐matter interactions, and its adjustable nature, has …
wide absorption band, strong light‐matter interactions, and its adjustable nature, has …
Evolution of graphene patterning: from dimension regulation to molecular engineering
The realization that nanostructured graphene featuring nanoscale width can confine
electrons to open its bandgap has aroused scientists' attention to the regulation of graphene …
electrons to open its bandgap has aroused scientists' attention to the regulation of graphene …
Understanding of MoS2/GaN Heterojunction Diode and its Photodetection Properties
Fabrication of heterojunction between 2D molybdenum disulfide (MoS2) and gallium nitride
(GaN) and its photodetection properties have been reported in the present work. Surface …
(GaN) and its photodetection properties have been reported in the present work. Surface …
Lateral Heterostructure Formed by Highly Thermally Conductive Fluorinated Graphene for Efficient Device Thermal Management
F Wang, Z Liu, J Li, J Huang, L Fang, X Wang… - Advanced …, 2024 - Wiley Online Library
The continued miniaturization of chips demands highly thermally conductive materials and
effective thermal management strategies. Particularly, the high‐field transport of the devices …
effective thermal management strategies. Particularly, the high‐field transport of the devices …