Mostrando 341 - 360 Resultados de 686 Para Buscar '"visible spectrum"', tiempo de consulta: 0.89s Limitar resultados
  1. 341
    “…Thin films of β-CuPc display low extinction coefficients in the blue-green region of the visible spectrum as well as exceptional thermal stability, allowing a wide temperature range of operation of our Raman thermometer, with minimal optical distortion of the underlying structures. …”
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  2. 342
    “…In turn, because of the weak transitions of MEK in the visible spectrum, STED, in its original sense, cannot be applied to deplete MEK in the outer rim of the point spread function. …”
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  3. 343
    “…This fuel cell has a maximum power of 0.276 mW cm(−2) at an operating current of 1.75 mA cm(−2). Ultraviolet–visible spectrum and potentiometric titration identify the oxidation state of prepared vanadium electrolytes is 3.48 ± 0.06, close to the ideal 3.5. …”
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  4. 344
    “…The majority of previous multi-object tracking studies have focused on pedestrian tracking in visible-spectrum images, but tracking different types of vehicles is also important in city-surveillance scenarios. …”
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  5. 345
    “…As soon as the AgNPs were biosynthesized, they immediately changed color, and the distinctive surface plasmon resonance (SPR) occurred at 420 nm in the Ultraviolet–Visible spectrum, proving that the biosynthesis had been successful. …”
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  6. 346
    “…It is shown, that spectroscopic study, in particular, Raman spectroscopy can reveal peculiar features of structures of such composite systems due to LSPR and photoluminescence (PL) of Au NPs in the visible spectrum. In particular, defect peaks of TiO(2) (700–720 cm(−1)) or WO(3) (935 cm(−1)) in Raman spectra can be clearly observed when the samples are illuminated with a 633 nm excitation laser. …”
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  7. 347
    “…Interestingly, the glass exhibited a full visible‐spectrum conversion ability from 300 to 800 nm. …”
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  8. 348
    “…The molecular transition of polymers was determined by a UV–visible spectrum study. A polymeric arrangement of the molecule can be seen in scanning electron microscopy (SEM) images. …”
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  9. 349
    “…Photoluminescence (PL) experiments revealed broad, tunable emissions with peaks ranging from the near-infrared across the full visible spectrum. The emission energy was highly dependent on the film composition and changed only slightly with annealing temperature and time, which primarily affected the emission intensity. …”
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  10. 350
    por Dattner, Yonathan, Yadid-Pecht, Orly
    Publicado 2010
    “…The PAA is optically transparent in solid form and therefore does not contribute to the absorbance of light in the visible spectrum. Many combinations of absorbing specimen and polar protic solvents can be derived, yielding different filter characteristics in different parts of the spectrum. …”
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  11. 351
    “…Synthesis of colloidal AgNPs was monitored by UV-Visible spectroscopy. The UV-Visible spectrum showed a peak between 417 and 425 nm corresponding to the Plasmon absorbance of the AgNPs. …”
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  12. 352
    “…The morphology and structure of synthesized silver nanoparticles were characterized using FT-IR, XRD, UV–visible spectrum of the aqueous medium containing silver ion showed a peak in the range of 420–430 nm corresponding to the Plasmon absorbance of silver nanoparticles. …”
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  13. 353
    “…Photochemical damage occurs after an exposure to high energy radiation within the visible spectrum of light, causing morphological changes in the retina and the formation of superoxide anion. …”
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  14. 354
    “…The present study demonstrates an eco-friendly and low-cost method of biosynthesis of silver nanoparticles using cell-free filtrate of phytopathogenic fungus Macrophomina phaseolina. UV-visible spectrum showed a peak at 450 nm corresponding to the plasmon absorbance of silver nanoparticles. …”
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  15. 355
    “…The reflection peaks of formed photonic crystals cover the entire visible spectrum, which indicates a good magnetochromatic property and prospect of wide applications. …”
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  16. 356
    “…Due to the ease in BPLC fabrication and the availability of azo-dopants with photosensitivity throughout the entire visible spectrum, one can optimize the controlling material and optical parameters to obtain even better performance.…”
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  17. 357
    “…We investigate this direct-to-indirect bandgap crossover, demonstrate a highly tuneable optical response from the near infrared to the visible spectrum with decreasing layer thickness down to 2 layers, and report quantum dot-like optical emissions distributed over a wide range of energy. …”
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  18. 358
    “…The fabricated multilayer MoS(2) phototransistors on a polyarylate substrate exhibit decent electrical characteristics (μ(FE) > 64.4 cm(2)/Vs, on/off ratio > 10(6)), and the integrated F-P filters, being able to cover whole visible spectrum, successfully modulate the spectral response characteristics of MoS(2) phototransistors from ~495 nm (blue) to ~590 nm (amber). …”
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  19. 359
    “…The GaN/mesoporous GaN DBRs exhibit high peak reflectivities (>96%) across the entire visible spectrum and wide spectral stop-band widths (full-width at half-maximum >80 nm), while preserving the material quality and showing good electrical conductivity. …”
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  20. 360
    “…The simplicity of the system hardware could enable low-cost three-dimensional imaging devices for precision ranging at wavelengths beyond the visible spectrum.…”
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