Works matching IS 21928606 AND DT 2020 AND VI 9 AND IP 7
Results: 34
Graphene plasmonic devices for terahertz optoelectronics.
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- Nanophotonics (21928606), 2020, v. 9, n. 7, p. 1901, doi. 10.1515/nanoph-2020-0211
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Effects of gap thickness and emitter location on the photoluminescence enhancement of monolayer MoS<sub>2</sub> in a plasmonic nanoparticle-film coupled system.
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- Nanophotonics (21928606), 2020, v. 9, n. 7, p. 2097, doi. 10.1515/nanoph-2020-0178
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Nanofocusing of acoustic graphene plasmon polaritons for enhancing mid-infrared molecular fingerprints.
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- Nanophotonics (21928606), 2020, v. 9, n. 7, p. 2089, doi. 10.1515/nanoph-2020-0164
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MXene-Ti<sub>3</sub>C<sub>2</sub> assisted one-step synthesis of carbon-supported TiO<sub>2</sub>/Bi<sub>4</sub>NbO<sub>8</sub>Cl heterostructures for enhanced photocatalytic water decontamination.
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- Nanophotonics (21928606), 2020, v. 9, n. 7, p. 2077, doi. 10.1515/nanoph-2020-0088
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Real-time and noninvasive tracking of injectable hydrogel degradation using functionalized AIE nanoparticles.
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- Nanophotonics (21928606), 2020, v. 9, n. 7, p. 2063, doi. 10.1515/nanoph-2020-0087
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Temperature-stable black phosphorus field-effect transistors through effective phonon scattering suppression on atomic layer deposited aluminum nitride.
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- Nanophotonics (21928606), 2020, v. 9, n. 7, p. 2053, doi. 10.1515/nanoph-2020-0075
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2D materials integrated with metallic nanostructures: fundamentals and optoelectronic applications.
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- Nanophotonics (21928606), 2020, v. 9, n. 7, p. 1877, doi. 10.1515/nanoph-2020-0074
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Indium selenide film: a promising saturable absorber in 3- to 4-μm band for mid-infrared pulsed laser.
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- Nanophotonics (21928606), 2020, v. 9, n. 7, p. 2045, doi. 10.1515/nanoph-2020-0068
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Two-dimensional nanomaterials for Förster resonance energy transfer–based sensing applications.
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- Nanophotonics (21928606), 2020, v. 9, n. 7, p. 1855, doi. 10.1515/nanoph-2020-0065
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MXenes for future nanophotonic device applications.
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- Nanophotonics (21928606), 2020, v. 9, n. 7, p. 1831, doi. 10.1515/nanoph-2020-0060
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Recent advances in graphene and black phosphorus nonlinear plasmonics.
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- Nanophotonics (21928606), 2020, v. 9, n. 7, p. 1695, doi. 10.1515/nanoph-2020-0004
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2D organic-inorganic hybrid perovskite materials for nonlinear optics.
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- Nanophotonics (21928606), 2020, v. 9, n. 7, p. 1787, doi. 10.1515/nanoph-2020-0038
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Novel layered 2D materials for ultrafast photonics.
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- Nanophotonics (21928606), 2020, v. 9, n. 7, p. 1743, doi. 10.1515/nanoph-2020-0030
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The pump fluence and wavelength-dependent ultrafast carrier dynamics and optical nonlinear absorption in black phosphorus nanosheets.
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- Nanophotonics (21928606), 2020, v. 9, n. 7, p. 2033, doi. 10.1515/nanoph-2020-0025
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Fabrication, optical properties, and applications of twisted two-dimensional materials.
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- Nanophotonics (21928606), 2020, v. 9, n. 7, p. 1717, doi. 10.1515/nanoph-2020-0024
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Fine structures of valley-polarized excitonic states in monolayer transitional metal dichalcogenides.
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- Nanophotonics (21928606), 2020, v. 9, n. 7, p. 1811, doi. 10.1515/nanoph-2020-0054
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Tunable electronic structure of two-dimensional transition metal chalcogenides for optoelectronic applications.
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- Nanophotonics (21928606), 2020, v. 9, n. 7, p. 1675, doi. 10.1515/nanoph-2019-0574
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Monolayer MoS<sub>2</sub> for nanoscale photonics.
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- Nanophotonics (21928606), 2020, v. 9, n. 7, p. 1557, doi. 10.1515/nanoph-2019-0533
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Nonlinear optical properties of anisotropic two-dimensional layered materials for ultrafast photonics.
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- Nanophotonics (21928606), 2020, v. 9, n. 7, p. 1651, doi. 10.1515/nanoph-2019-0573
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Advances in photonics of recently developed Xenes.
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- Nanophotonics (21928606), 2020, v. 9, n. 7, p. 1621, doi. 10.1515/nanoph-2019-0561
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MXenes: focus on optical and electronic properties and corresponding applications.
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- Nanophotonics (21928606), 2020, v. 9, n. 7, p. 1601, doi. 10.1515/nanoph-2019-0556
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Plasmonic nanocavity enhanced vibration of graphene by a radially polarized optical field.
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- Nanophotonics (21928606), 2020, v. 9, n. 7, p. 2017, doi. 10.1515/nanoph-2019-0553
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2D photonic memristor beyond graphene: progress and prospects.
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- Nanophotonics (21928606), 2020, v. 9, n. 7, p. 1579, doi. 10.1515/nanoph-2019-0543
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Facile synthesis of sulfur@titanium carbide Mxene as high performance cathode for lithium-sulfur batteries.
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- Nanophotonics (21928606), 2020, v. 9, n. 7, p. 2025, doi. 10.1515/nanoph-2019-0568
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Broadband nonlinear optical response in GeSe nanoplates and its applications in all-optical diode.
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- Nanophotonics (21928606), 2020, v. 9, n. 7, p. 2007, doi. 10.1515/nanoph-2019-0531
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Biexcitons in 2D (iso-BA)<sub>2</sub>PbI<sub>4</sub> perovskite crystals.
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- Nanophotonics (21928606), 2020, v. 9, n. 7, p. 2001, doi. 10.1515/nanoph-2019-0528
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Enhancing the generating and collecting efficiency of single particle upconverting luminescence at low power excitation.
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- Nanophotonics (21928606), 2020, v. 9, n. 7, p. 1993, doi. 10.1515/nanoph-2019-0526
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High-performance monolayer MoS<sub>2</sub> photodetector enabled by oxide stress liner using scalable chemical vapor growth method.
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- Nanophotonics (21928606), 2020, v. 9, n. 7, p. 1981, doi. 10.1515/nanoph-2019-0515
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Phosphorene-assisted silicon photonic modulator with fast response time.
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- Nanophotonics (21928606), 2020, v. 9, n. 7, p. 1973, doi. 10.1515/nanoph-2019-0510
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Quantum confinement-induced enhanced nonlinearity and carrier lifetime modulation in two-dimensional tin sulfide.
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- Nanophotonics (21928606), 2020, v. 9, n. 7, p. 1963, doi. 10.1515/nanoph-2019-0448
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Magnons scattering induced photonic chaos in the optomagnonic resonators.
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- Nanophotonics (21928606), 2020, v. 9, n. 7, p. 1953, doi. 10.1515/nanoph-2019-0441
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Topological insulator overlayer to enhance the sensitivity and detection limit of surface plasmon resonance sensor.
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- Nanophotonics (21928606), 2020, v. 9, n. 7, p. 1941, doi. 10.1515/nanoph-2019-0439
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Ultra-strong anisotropic photo-responsivity of bilayer tellurene: a quantum transport and time-domain first principle study.
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- Nanophotonics (21928606), 2020, v. 9, n. 7, p. 1931, doi. 10.1515/nanoph-2019-0435
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Real-time dynamics of soliton collision in a bound-state soliton fiber laser.
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- Nanophotonics (21928606), 2020, v. 9, n. 7, p. 1921, doi. 10.1515/nanoph-2019-0422
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