This study demonstrates a versatile hardware platform using nano‐oscillators based on binary oxides for deterministic and probabilistic computing. By tailoring material physics, NbOx enables energy‐efficient synchronization for pattern recognition, while enhanced stochasticity in engineered SiOx provides robust entropy for p‐bits to solve complex ...
Jihyun Kim +3 more
wiley +1 more source
Modeling thermoelectric performance of p-type Cu3SbSe4-based chalcogenide materials using decision trees and structural risk error minimization intelligent computational methods. [PDF]
Alharbi FS.
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Ripples transform 2D materials by creating tunable strain fields. This enables precise manipulation of electronic and optical properties, driving innovations in next‐generation optoelectronics and quantum devices. ABSTRACT As integrated circuit technology approaches its physical limits in the post‐Moore era, transition metal sulfides, with atomic‐scale
Haitao Yu, Xiao Wu
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Johari-Goldstein relaxation in quenched and irradiated chalcogenide glasses.
Baglioni J +8 more
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Close Space Sublimation Growth of Sb<sub>2</sub>(S,Se)<sub>3</sub> Thin-Film Solar Cells. [PDF]
Sindi DA +5 more
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The Synthesis of New Chalcogenides from the System GeTe<sub>6</sub>-Cu and a Layered Structure Based on Them and an Azo Polymer for Application in Optoelectronics. [PDF]
Trifonova Y +7 more
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Stable and efficient PbS quantum dot photoelectrodes enable photoelectrochemical hydrogen production without sacrificial agents. [PDF]
Yang HY +8 more
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On-device cryogenic quenching enables robust amorphous tellurium for threshold switching. [PDF]
Hur N +7 more
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Aqueous Continuous Flow Synthesis of Cadmium Chalcogenide Quantum Dots: Opportunities and Challenges. [PDF]
Campalani C, Petit G, Monbaliu JM.
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Computational Discovery of Novel Chalcogenide Perovskites YbMX<sub>3</sub> (M = Zr, Hf; X = S, Se) for Optoelectronics. [PDF]
Li Q, Wu H, Li W, Zhang J, Sa R.
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