Results 81 to 90 of about 75,635 (199)
LiInSe2 for Semiconductor Neutron Detectors
Lithium indium selenide (LiInSe2) is being developed for use as a room temperature semiconductor detector for thermal neutrons. The material has been studied for a number of applications including non-linear optics such as parametric oscillators, as ...
Alireza Kargar +8 more
doaj +1 more source
This review explains how atomically thin materials can combine information storage, processing, and mechanical flexibility in neuromorphic devices. It connects material properties and engineering strategies with device architecture, synaptic behavior, and performance under bending.
Junzhe Tang, Letian Dai
wiley +1 more source
Traditional light‐analyzing tools, known as spectrometers, are typically too bulky and expensive to fit into portable electronics like smartphones or wearables. In this study, we developed a microscopic, high‐performance spectrometer using a material called Indium Selenide combined with smart algorithms to accurately analyze light from the visible to ...
Jing Chen +8 more
wiley +1 more source
Indium selenide (InSe), belonging to group-III monochalcogenides, is of great interest for novel device concept in optoelectronic applications due to its lighter effective electron mass (m* = 0.143 m0) in conduction band, high carrier mobility resulted ...
Huang, Yan-Ting
core
Current limiting and negative differential resistance in indium oxide based ceramics [PDF]
Indium oxide based ceramics with bismuth oxide addition were sintered in air in the temperature range 800-1300 ºC. Current-voltage characteristics of In2O3-Bi2O3 ceramics sintered at different temperatures are weakly nonlinear.
Bondarchuk, AN +19 more
core +1 more source
Hydrothermal Synthesis of Lead Indium Selenide
Lead indium selenide (PbIn2Se₄) is a promising chalcogenide semiconductor for optoelectronic and energy applications. We report a hydrothermal synthesis route using ethylene glycol under moderate conditions (433– 453 K, 7–12 h), yielding up to 85–87%. The product crystallized into a cotton-like morphology composed of nanoand microparticles.
A. B. Rzayeva +4 more
openaire +1 more source
This work demonstrates progress in the development of wide‐bandgap CIGS solar cells featuring a transparent back contact, for the application of top cell in tandem devices. A semitransparent device with a bandgap of 1.6 eV achieved a power conversion efficiency of nearly 13% on an ITO back contact.
Kulwinder Kaur +6 more
wiley +1 more source
Structural, morphological andoptical properties of undoped and boron doped Indium Selenide (InSe) thin filmsgrown on glass and layered Gallium Selenide (GaSe) single crystal substrateswith SILAR method have been investigatedby XRD, AFM and UV-Vis ...
Hüseyin Ertap +2 more
doaj +1 more source
Stable, Efficient, and Scalable Two‐Dimensional Perovskites for Next‐Generation Solar Cells
Two‐dimensional perovskites are presented as a versatile platform for photovoltaic research, combining enhanced stability with competitive efficiencies. This review analyses 2D perovskite structure–property relationships linking crystallographic orientation and phase distribution and implications in stability and performance.
Kaushik Bhat +3 more
wiley +1 more source
The optical, electrical, and thermal properties of indium selenides are strongly influenced by their crystal structure. At room temperature (RT), the indium selenide with the stoichiometry In _2 Se _2 exhibits two coexisting crystalline phases namely α ...
Josue Fernando Teoyotl Sosa +4 more
doaj +1 more source

