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      Optoelectronic Properties of Amorphous Carbon-Based Nanotube and Nanoscroll

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          Abstract

          Free-standing monolayer amorphous carbon (MAC) is a pure carbon structure composed of randomly distributed atom rings with different sizes, which was recently synthesized. In this work, we carried out ab initio and tight-binding calculations to investigate the optoelectronic properties of MAC and its derived nanotube and nanoscroll configurations. Our results show MAC, tube, and scrolls exhibit similar electronic behavior. All structures absorb from infrared to ultraviolet, with maximum absorption peaks the visible-ultra violet (\(\sim 3.2\) eV). The maximum and minimum reflectivity values are in the range 0.3-0.5 (infrared) and 0.1-0.0 (ultraviolet), making these materials good candidates to ultraviolet filters.

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          Author and article information

          Journal
          09 July 2020
          Article
          2007.05062
          d8ff688d-1205-4f38-a8a4-4e9ab3d03e34

          http://arxiv.org/licenses/nonexclusive-distrib/1.0/

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          cond-mat.mtrl-sci

          Condensed matter
          Condensed matter

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