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Results 1591 - 1600 of 1932 for Nanotechnology
  • Article - 20 Sep 2024
    Recent advancements in Extreme Ultraviolet (EUV) lithography are transforming semiconductor manufacturing by enabling the production of microchips with features smaller than 7 nanometers. This...
  • Article - 30 Aug 2024
    Graphene, the "wonder material" of the 21st century, continues to redefine science and technology with its exceptional properties. Recent advancements highlight its potential in faster computing,...
  • Article - 6 Aug 2024
    Photothermal spectroscopy and therapy enhance cancer diagnosis and treatment, leveraging advanced imaging techniques and nanoparticle applications for precision and efficacy.
  • Article - 22 Jul 2024
    Quantum dot labeling advances biological research with unmatched fluorescence stability and multiplex imaging, offering precision and sensitivity in bioimaging applications while addressing...
  • Article - 5 Jul 2024
    Semiconductors, the backbone of modern electronics, are created through intricate processes involving materials like silicon and technologies such as photolithography and doping.
  • Article - 17 Jun 2024
    Nanoimprint lithography (NIL) employs advanced methods and diverse materials for high-resolution, cost-effective nanoscale patterning. This technology revolutionizes the semiconductor industry,...
  • Article - 24 May 2024
    Graphene Field Effect Transistors (GFETs) show promise for future electronics. They offer high-speed performance, enhanced sensitivity, and applications in biosensing, flexible devices, and more.
  • Article - 17 May 2024
    Graphene grids enhance electron microscopy imaging with high uniformity, inertness, and mechanical strength, ideal for high-resolution biological samples.
  • Article - 7 May 2024
    Nanopores revolutionize protein analysis with single-molecule sensitivity, enabling real-time, label-free detection for advanced biomedical research.
  • Article - 2 May 2024
    Advanced nanoparticle detection methods like electron microscopy and DLS are key for characterizing size, shape, and composition in nanotechnology.

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