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  2. Dec 3, 2014 · Nanostructured materials are being investigated and developed as versatile components of optoelectronic devices with the ability to manipulate light (via plasmonic enhancement, photonic crystals,...

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  3. Jul 11, 2017 · Nanomaterials and nanostructures have promising potential to push the theoretical limits of solar cell efficiency even higher using the intrinsic advantages associated with these materials, including efficient photon management, rapid charge transfer, and short charge collection distances.

    • Hsin-Ping Wang, Jr-Hau He
    • 2017
  4. Apr 23, 2015 · The fundamental principles and important features of these advanced solar cell designs are systematically reviewed and summarized in this paper, with a focus on the function and role of nanostructures and the key factors affecting device performance.

  5. Aug 9, 2021 · In this paper, the full solar spectrum coverage with an absorption efficiency above 96% is attained by shell-shaped graphene-based hollow nano-pillars on top of the refractory metal...

    • Shiva Hayati Raad, Zahra Atlasbaf
    • 2021
  6. Jan 1, 2012 · In the end, we will briefly review some of the unique nanostructures for solar cells, including nanodome, nano-forest, nanotube, etc. These studies can inspire more multi-dimensional research on nanostructured PV.

    • Rui Yu, Qingfeng Lin, Siu Fung Leung, Zhiyong Fan
    • 2012
  7. Mar 31, 2016 · We invite authors to contribute original research articles and review articles covering the current progress on nanostructured solar cells. Potential topics include, but are not limited to: 1. Colloidal quantum dot solar cells based on nanostructured devices. 2. Dyes or colloidal quantum dot sensitized solar cells based on nanostructured ...

  8. Nov 12, 2017 · Nanostructured materials, such as nanowires, nanorods, and quantum dot structures, are being studied and developed for solar cell applications since they have enabled the fabrication of high efficient and low-cost devices.