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Electronic properties and nonlinear optical responses of boronitrogen-doped zigzag graphene nanoribbons

机译:硼/氮掺杂之字形石墨烯纳米带的电子性质和非线性光学响应

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摘要

The electronic properties and second-order nonlinear optical (NLO) responses of B/N-doped zigzag graphene nanoribbon (ZGNR) have been investigated using quantum chemistry methods. The electron-deficient B atoms prefer to form pi-conjugation with the C atoms nearby along the B-doped zigzag edge. On the other hand, the electron-rich N atoms with radical characteristics weaken the conjugated bonding effects in the N-doped ZGNR. The NLO response of the ZGNR is enhanced by doping only one zigzag edge with B or N atoms. The conjugated B-doped zigzag edge takes the role of electron donor, while the N-doped zigzag edge serves as electron acceptor, giving rise to the discordant impact on the second-order NLO response of the BN-doped ZGNR.
机译:B / N掺杂的曲折石墨烯纳米带(ZGNR)的电子性质和二阶非线性光学(NLO)响应已使用量子化学方法进行了研究。缺电子的B原子倾向于沿着B掺杂的之字形边缘与附近的C原子形成pi共轭。另一方面,具有自由基特性的富电子的N原子会削弱N掺杂ZGNR中的共轭键合效果。通过仅用B或N原子掺杂一个锯齿形边缘,可以增强ZGNR的NLO响应。共轭B掺杂的之字形边缘充当电子给体,而N掺杂的之字形边缘充当电子受体,从而对BN掺杂的ZGNR的二阶NLO响应产生不一致的影响。

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