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探究氮掺杂碳纳米管的线性和非线性光学性质。

Probing the linear and nonlinear optical properties of nitrogen-substituted carbon nanotube.

机构信息

Institute of Functional Material Chemistry, Faculty of Chemistry, Northeast Normal University, Changchun, 130024 Jilin, People's Republic of China.

出版信息

J Mol Model. 2012 Jul;18(7):3219-25. doi: 10.1007/s00894-011-1334-7. Epub 2012 Jan 14.

Abstract

In view of their intriguing structural and electrical properties, the linear and nonlinear optical (NLO) responses of six carbon nanotube (CNT) molecules substituted by nitrogen atoms at one end have been explored by using the CAM-B3LYP method. Molecules 1, 2 and 3 were obtained by increasing the lengths of the CNTs, and 1-Li, 2-Li and 3-Li were constructed by doping one Li atom into the N-substituted end of 1, 2 and 3 (mentioned above), respectively. Two effective approaches have been proposed to increase nonlinear optical properties(NLO): increasing the length of the CNT as well as doping one Li atom into the N-substituted end. The results show that both the linear polarizabilities (α(0)) and nonlinear first hyperpolarizabilities (β(tot)) values increase with increasing the lengths of the CNTs: 188 of 1 < 307 of 2 < 453 of 3 for α(0) and 477 of 1 < 2654 of 2 < 3906 au of 3 for β(tot). Significantly, compared with the non-doped CNTs, the β(tot) values are remarkably enhanced by doping one Li atom into the N-substituted end: 477 of 1 < 23258 of 1-Li, 2654 of 2 < 37244 of 2-Li, and 3906 of 3 < 72004 au of 3-Li. Moreover, the β(vec) values show a similar trend to the β(tot) values. Our results may be beneficial to experimentalists in exploring high-performance nonlinear optical materials based on CNT.

摘要

鉴于其有趣的结构和电学性质,使用 CAM-B3LYP 方法研究了 6 个一端被氮原子取代的碳纳米管(CNT)分子的线性和非线性光学(NLO)响应。分子 1、2 和 3 通过增加 CNT 的长度获得,而 1-Li、2-Li 和 3-Li 则通过在上面提到的 N 取代端掺杂一个 Li 原子分别构建而成。提出了两种有效方法来提高非线性光学性质(NLO):增加 CNT 的长度以及将一个 Li 原子掺杂到 N 取代端。结果表明,线性极化率(α(0))和非线性第一超极化率(β(tot))值都随着 CNT 长度的增加而增加:188 个 1 < 307 个 2 < 453 个 3 为α(0),477 个 1 < 2654 个 2 < 3906 个 au 为 3 为β(tot)。值得注意的是,与未掺杂的 CNT 相比,将一个 Li 原子掺杂到 N 取代端可以显著提高β(tot)值:477 个 1 < 23258 个 1-Li,2654 个 2 < 37244 个 2-Li,和 3906 个 3 < 72004 个 au 为 3-Li。此外,β(vec)值表现出与β(tot)值相似的趋势。我们的结果可能有助于实验人员探索基于 CNT 的高性能非线性光学材料。

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