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Showing 1–6 of 6 results
Advanced filters: Author: Ruoxue Yang Clear advanced filters
  • Materials with opposite signs of permittivity along the two orthogonal directions can support hyperbolic polaritons. Here, the authors demonstrate tunable broadband near-infrared hyperbolic plasmon polaritons in MoOCl2.

    • Yaolong Li
    • Yuxin Zhang
    • Qihuang Gong
    ResearchOpen Access
    Nature Communications
    Volume: 16, P: 1-8
  • A nanowire waveguide attached to an optical fibre can deliver payloads into cells and act as an endoscope capable of imaging single living cells with high spatial resolution.

    • Ruoxue Yan
    • Ji-Ho Park
    • Peidong Yang
    Research
    Nature Nanotechnology
    Volume: 7, P: 191-196
  • Modulated proton transport has a significant role in biological processes such as ATP synthesis and in electrochemical energy conversion. Electrostatic gating of proton conduction that can be actively modulated is now shown in aligned mesoporous silica thin-films.

    • Rong Fan
    • Seong Huh
    • Peidong Yang
    Research
    Nature Materials
    Volume: 7, P: 303-307
  • Semiconductor nanowires, by definition, typically have cross-sectional dimensions that can be tuned from 2–200 nm, with lengths spanning from hundreds of nanometres to millimetres. These subwavelength structures represent a new class of semiconductor materials for investigating light generation, propagation, detection, amplification and modulation. After more than a decade of research, nanowires can now be synthesized and assembled with specific compositions, heterojunctions and architectures. This has led to a host of nanowire photonic devices including photodetectors, chemical and gas sensors, waveguides, LEDs, microcavity lasers, solar cells and nonlinear optical converters. A fully integrated photonic platform using nanowire building blocks promises advanced functionalities at dimensions compatible with on-chip technologies.

    • Ruoxue Yan
    • Daniel Gargas
    • Peidong Yang
    Reviews
    Nature Photonics
    Volume: 3, P: 569-576