Results 221 to 230 of about 386,815 (325)
This work demonstrates an interphase strain engineering strategy to regulate capacitive energy storage performance in high‐entropy oxide thin films. Through introducing pyrochlore nanocolumns, the polarization response of perovskite unit cells is strengthened, yielding recoverable energy densities up to 93 J cm−3 with an efficiency of 83% under ...
Hao Luo+11 more
wiley +1 more source
Association of structured continuum emission with dynamic aurora. [PDF]
Spanswick E+10 more
europepmc +1 more source
On the luminosity curve a colour-blind observer
Walter H. Watson, F. W. Edridge‐Green
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The Color-Luminosity Diagram of the Ursa Major Group [PDF]
G. R. Miczaika
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Phase Engineering of a 1D van der Waals Thin Film
Explores the transformative potential of 1D van der Waals materials, focusing on the monoclinic‐to‐tetragonal phase transition in NbTe4, its atomic‐scale mechanisms, and significant metal‐insulator transition (MIT) behavior. Highlights advanced imaging insights and the applications of reversible phase transitions in memory devices, sensors, and ...
Yi Shuang, Daisuke Ando, Yuji Sutou
wiley +1 more source
Stellar Luminosity and the Opacity in the Outer Layers of a Star [PDF]
E. A. Milne
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Al1‐xScxN‐Based Ferroelectric Domain‐Wall Memristors
(a) Conductive atomic force microscopy (CAFM) image of the initial state bidomain structure of the Al0.85Sc0.15N (a) showing an enhanced conductivity of the head‐to‐head domain boundary. (b) CAFM image of the same area after application of several −65 V, 1 s voltage pulses showing lower conductivity of the generated tail‐to‐tail domain walls.
Haidong Lu+11 more
wiley +1 more source
Synthetic cells are engineered herein to respond to an external chemical messenger by the activation of intracellular catalysis. The chemical messenger molecules are catalytically generated by an extracellular enzyme or a mineral surface, whereas the intracellular catalysis emerges via direct enzyme activation or via protein refolding.
Dante G. Andersen+5 more
wiley +1 more source
SiPM Developments for the Time-Of-Propagation Detector of the Belle II Experiment. [PDF]
Dal Corso F+3 more
europepmc +1 more source
A single‐step, low‐temperature co‐pyrolysis process removes encapsulated seed metal NPs (10–50 nm) from CNTs, redistributing them as surface‐anchored metal and metal–nitride NCs (1–1.5 nm). Herein, Ni3N NCs achieve an ultra‐low onset overpotential for CO2 reduction to CO with >98% Faradaic efficiency across 100–700 mA cm−2.
Ahmed Badreldin+15 more
wiley +1 more source