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Wide bandgap oxide semiconductors: from materials physics to optoelectronic devices
Wide bandgap oxide semiconductors constitute a unique class of materials that combine
properties of electrical conductivity and optical transparency. They are being widely used as …
properties of electrical conductivity and optical transparency. They are being widely used as …
Progress, challenges, and opportunities in oxide semiconductor devices: a key building block for applications ranging from display backplanes to 3D integrated …
As Si has faced physical limits on further scaling down, novel semiconducting materials such
as 2D transition metal dichalcogenides and oxide semiconductors (OSs) have gained …
as 2D transition metal dichalcogenides and oxide semiconductors (OSs) have gained …
Selenium-alloyed tellurium oxide for amorphous p-channel transistors
Compared to polycrystalline semiconductors, amorphous semiconductors offer inherent cost-
effective, simple and uniform manufacturing. Traditional amorphous hydrogenated Si falls …
effective, simple and uniform manufacturing. Traditional amorphous hydrogenated Si falls …
Low power flexible monolayer MoS2 integrated circuits
Monolayer molybdenum disulfide (ML-MoS2) is an emergent two-dimensional (2D)
semiconductor holding potential for flexible integrated circuits (ICs). The most important …
semiconductor holding potential for flexible integrated circuits (ICs). The most important …
High-performance inorganic metal halide perovskite transistors
The p-type characteristic of solution-processed metal halide perovskite transistors means
that they could be used in combination with their n-type counterparts, such as indium …
that they could be used in combination with their n-type counterparts, such as indium …
Direct laser writing: from materials synthesis and conversion to electronic device processing
Abstract Direct Laser Writing (DLW) has been increasingly selected as a microfabrication
route for efficient, cost‐effective, high‐resolution material synthesis and conversion …
route for efficient, cost‐effective, high‐resolution material synthesis and conversion …
Photoelectrochemical water‐splitting using CuO‐based electrodes for hydrogen production: a review
R Siavash Moakhar… - Advanced …, 2021 - Wiley Online Library
The cost‐effective, robust, and efficient electrocatalysts for photoelectrochemical (PEC)
water‐splitting has been extensively studied over the past decade to address a solution for …
water‐splitting has been extensively studied over the past decade to address a solution for …
[HTML][HTML] A review of Ga2O3 materials, processing, and devices
Gallium oxide (Ga 2 O 3) is emerging as a viable candidate for certain classes of power
electronics, solar blind UV photodetectors, solar cells, and sensors with capabilities beyond …
electronics, solar blind UV photodetectors, solar cells, and sensors with capabilities beyond …
[HTML][HTML] In-memory computing with emerging memory devices: Status and outlook
In-memory computing (IMC) has emerged as a new computing paradigm able to alleviate or
suppress the memory bottleneck, which is the major concern for energy efficiency and …
suppress the memory bottleneck, which is the major concern for energy efficiency and …
Materials science challenges to graphene nanoribbon electronics
Graphene nanoribbons (GNRs) have recently emerged as promising candidates for channel
materials in future nanoelectronic devices due to their exceptional electronic, thermal, and …
materials in future nanoelectronic devices due to their exceptional electronic, thermal, and …