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Research Highlights

Welcome to our Research Highlights page. This page gathers all of the scientific output from the NanoOddLAB, offering a comprehensive look at the team’s work and achievements. It highlights the dedication and effort our researchers put into every project, showcasing everything from published papers to ongoing studies. This is where you can get a clear view of the contributions our team is making and the impact of their hard work.


  • Versatile lasing architectures!

    Versatile lasing architectures!

    Colloidal Silver Nanoparticle Plasmonic Arrays for Versatile Lasing Architectures via Template-Assisted Self-Assembly publication by Dr. Ylli Conti

  • Direct in situ growth of nanoparticle arrays

    Direct in situ growth of nanoparticle arrays

    “Probably the most significant bottle-neck in the use of colloidal nanoparticles in real life applications is represented by their integration into functional solid-state devices. This typically required ad-hoc solutions for each colloid, including…”

  • Colloidal Nanosynthesis

    Colloidal Nanosynthesis

    “Wet-chemical methods for the synthesis of metallic/semiconductor/dielectric nanoparticles offer unmatched potential for controlling their size, shape, composition, and surface chemistry, ultimately achieving a tight control over…”

  • Light-matter interaction in weak- and strong- coupling regime

    Light-matter interaction in weak- and strong- coupling regime

    “Both localized and lattice plasmon resonances offer unique opportunities to modify the emission behavior of molecular systems. In the weak-coupling regime, both linear and non-linear optical phenomena can be enhanced by the presence of…”

  • NANOGROWDIRECT

    NANOGROWDIRECT

    The NanoOddLAB’s first ERC Starting Grant project begins! NanoGrowDirect aims to develop a foundational understanding of CC-iSG through the interrogation of fundamental synthetic aspects, and maximize its potential for achieving exemplary control over nanoscale properties of nanosurfaces and metamaterials.

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