The electronic structures of disfigured nanographite strips are determined from the Huckel tight-restricting model. They emphatically rely upon the uniaxial strain and the lace geometry (edge structure and width). The uniaxial strain essentially influences the subband spacings and the vitality scatterings. A dull connection between the uniaxial strain and the state energies is missing. For easy chair strips, the uniaxial strain definitely changes the vitality hole and accordingly prompts the semiconductor-metal progress. The reliance of vitality hole on strain is dictated by the lace width. The enormous strain could likewise prompt the subband crossing. Then again, crisscross strips stay metallic during the variety of the strain. Easy chair and crisscross strips, separately, carry on as crisscross and rocker nanotubes. The determined ingestion range displays rich pinnacle structures, for the most part inferable from the dissimilar thickness of conditions of the one-dimensional subbands. The uniaxial-strain impacts on optical excitations are solid for easy chair strips, however powerless for crisscross strips.
Research Article: Journal of Applied & Computational Mathematics
Research Article: Journal of Applied & Computational Mathematics
Research Article: Journal of Applied & Computational Mathematics
Research Article: Journal of Applied & Computational Mathematics
Research Article: Journal of Applied & Computational Mathematics
Research Article: Journal of Applied & Computational Mathematics
Research Article: Journal of Applied & Computational Mathematics
Research Article: Journal of Applied & Computational Mathematics
Scientific Tracks Abstracts: Advances in Recycling & Waste Management
Scientific Tracks Abstracts: Advances in Recycling & Waste Management
Posters & Accepted Abstracts: Journal of Biometrics & Biostatistics
Posters & Accepted Abstracts: Journal of Biometrics & Biostatistics
Posters-Accepted Abstracts: Journal of Applied & Computational Mathematics
Posters-Accepted Abstracts: Journal of Applied & Computational Mathematics
StudentPresentations: Journal of Biometrics & Biostatistics
StudentPresentations: Journal of Biometrics & Biostatistics
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