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openalex
K. V. Emtsev, Aaron Bostwick, K. Horn, Johannes Jobst 等
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GrapheneMaterials scienceSilicon carbideGraphene oxide paperAnnealing (glass)
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Exploratory quantum materials discovery remains crucial to progress in material science. Due to the grand challenges that we are facing in predicting these materials and their properties from scratch, chemical design principles remain a key ingredient for the …
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Microfluidic reactors are emerging as a highly promising technology for quantum dot synthesis due to the unparalleled control they provide over particle properties. In this article, we review recent developments in the microfluidic synthesis of quantum dots, a…
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One-dimensional models of interacting electrons have long served as a testing ground for theoretical and numerical methods. More recently they have become directly relevant for interpreting experiments on spin chains, and ultracold quantum gases. This review g…
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Funding Information: We thank all the authors who contributed to this Special Issue. Special thanks go to Professor Lesley F. Cohen, Editor-in-Chief, Dr. Jenny Stein, Journal Manager, and Jaimee-Ian Rodriguez, Editorial Assistant of Applied Physics Letters, fo…
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Positive quantum spin Hall gap in mono-layer 1T'-WTe2 is consistently supported by density-functional theory calculations, ultrafast pump-probe, and electrical transport measurements. It is argued that monolayer 1T'-WTe2 , which was predicted to be a semimetal…
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The quantum yield for CO(2) uptake was measured on a number of C(3) and C(4) monocot and dicot species. Under normal atmospheric conditions (330 microliters per liter CO(2), 21% O(2)) and a leaf temperature of 30 degrees C, the average quantum yields (moles CO…
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1983-11-01
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1977-12-01
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2004-02-23
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We review recent work on quantum materials driven by light, emphasizing van der Waals systems hosting Moire superlattices. These non-equilibrium systems combine the twist-angle sensitivity of the band structures with the flexibility of light drives. The freque…
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It is demonstrated that 2% Yb: CaGdAlO4 (called CAlGO) presents favorable thermomechanical properties with a high measured thermal conductivity (Kc = 6.3 and Kc = 6.9 W m(-1) K(-1). A laser oscillation in this material at 1016 nm is demonstrated for the first …
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This study employs the polyfluorene composite (called Green B) with several colors of quantum dots to generate the high-color-rendering index (CRI) white LEDs. The Green B polymer is a good candidate to manufacture the hybrid w-LED because of its good quantum …
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Owing to their high integration and functionality, nanometer-scale optoelectronic devices based on III-V semiconductor materials are emerging as an enabling technology for fiber-optic communication applications. Semiconductor quantum dots (QDs) with the three-…
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We have employed photoluminescence spectroscopy to determine the temperature dependence of the interdiffusion coefficient of Al and Ga in GaAs/Al0.3Ga0.7As quantum wells. The position of the photoluminescence peaks, due to the n=1 electron to heavy-hole transi…
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The development of efficient and robust earth-abundant electrocatalysts for the hydrogen evolution reaction (HER) is an ongoing challenge. We report metallic cobalt pyrite (cobalt disulfide, CoS2) as one such high-activity candidate material and demonstrate th…
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2014-06-05
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