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Twisted monolayer black phosphorus nanoribbbons: Tunable electronic and optical properties

机译:扭曲的单层黑色磷纳米波巴:可调电子和光学性质

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摘要

Using density functional theory with meta generalized gradient approximation functional, we investigate scalable electronic and optical properties in twisted hydrogen passivated monolayer black phosphorus nanoribbons (PNRs) by twisting around a specified axis while varying the twisting angle up to 5°. We found that after twisting, the electronic tunability is significant for Armchair configuration of PNR (APNR). We have observed that the bandgap variation of H-passivated APNR upon twisting attains a maximum change of 132 meV per degree twist, and the twisted APNR bandgap is close to the bandgap of oxygen passivated non-twisted ones. Similarly, optical properties of APNR vary significantly upon twisting, which was confirmed by analyzing absorption spectra and optical bandgap. The extended spectral region in twisted APNR, which broadens from the mid-infra-red to the visible region, approaches the oxygenated effect. This tunability of electronic bandgaps and optical properties would ameliorate PNR based optoelectronic devices.
机译:利用Meta广义梯度近似函数的密度函数理论,通过围绕指定轴扭转,研究扭曲的氢气钝化的单层黑色磷纳米波氏(PNR)的可伸缩电子和光学性质,同时改变扭曲角度至5°。我们发现在扭曲后,电子可调性对于PNR(APNR)的扶手椅配置很重要。我们观察到,扭曲时H钝化APNR的带隙变化达到每度捻度的最大变化132meV,并且扭曲的APNR带隙接近氧气钝化的非扭曲的带隙。类似地,APNR的光学性质在扭曲时显着变化,通过分析吸收光谱和光学带隙来确认。扭曲APNR中的扩展光谱区域,其从中红外线宽到可见区域,接近含氧效果。这种电子带隙和光学性质的可随机性将改善基于PNR的光电器件。

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  • 来源
    《Journal of Applied Physics》 |2020年第9期|094303.1-094303.8|共8页
  • 作者单位

    Device Modeling Lab SASTRA Deemed University Thirumalaisamudram Thanjavur 613401 Tamil Nadu India;

    Physics Department SASTRA Deemed University Thirumalaisamudram Thanjavur 613401 Tamil Nadu India;

    Device Modeling Lab SASTRA Deemed University Thirumalaisamudram Thanjavur 613401 Tamil Nadu India;

    Device Modeling Lab SASTRA Deemed University Thirumalaisamudram Thanjavur 613401 Tamil Nadu India;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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  • 正文语种 eng
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