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Constructing a mixed π-conjugated bridge: a simple and effective approach to realize a large first hyperpolarizability in carbon nanotube-based systems

机译:构造混合π共轭桥:在基于碳纳米管的系统中实现较大的首次超极化性的简单有效方法

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摘要

By means of ab initio calculations, a new concept of the mixed π-conjugated bridge is identified to significantly improve the first hyperpolarizability of a D-π-A system based on carbon nanotubes (CNTs). This mixed π-conjugated bridge is constructed through applying a -(CH=CH)_X-NH2 chain to modify the end of the CNT system, which can effectively increase the degree of charge transfer and decrease the transition energy. This further results in a considerable first hyperpolarizability, much larger than that of the corresponding directly NH2-modified CNT system with the same conjugated length. In particular, the first hyperpolarizabilities of these tube-chain (CNT-(CH=CH)_x-NH2) systems can exhibit a monotonous increase with lengthening the -(CH=CH)_X-NH2 chain. This overcomes the bottleneck encountered with pure CNT serving as the π-conjugated bridge: that further extending the CNT will not produce any positive effect on improving their first hyperpolarizabilities in CNT-NH2 configurations once the CNT reaches a certain length. Additionally, it is revealed that the length ratio of tube to chain can play a crucial role in increasing the first hyperpolarizabilities of these tube-chain motifs CNTr(CH=CH)_x-NH2, and employing a -(CH=CH)_X-NH2 chain with comparable conjugated size to substitute the end of the CNT (namely, l ≈ x) can be an effective approach to achieve an excellent NLO response in a CNT-based D-π-A framework. These findings can provide valuable information for the design of new high-performance NLO materials based on CNTs.
机译:通过从头算,可以确定混合π共轭桥的新概念,以显着提高基于碳纳米管(CNT)的D-π-A系统的第一超极化性。该混合π共轭桥是通过应用-(CH = CH)_X-NH2链来修饰CNT系统的末端而构造的,可以有效地增加电荷转移程度并降低跃迁能。这进一步导致相当大的第一超极化性,远大于具有相同共轭长度的相应直接NH 2改性的CNT系统的第一超极化性。特别是,这些管链(CNT-(CH = CH)_x-NH2)系统的第一超极化性可能会随着-(CH = CH)_X-NH2链的延长而单调增加。这克服了纯CNT用作π共轭桥的瓶颈:一旦CNT达到一定长度,进一步扩展CNT不会对改善CNT-NH2构型的第一超极化性产生任何积极影响。此外,揭示了管与链的长度比在增加这些管链基序CNTr(CH = CH)_x-NH2的第一个超极化能力以及采用-(CH = CH)_X- NH2链具有可比较的共轭尺寸来替代CNT的末端(即l≈x)可以是在基于CNT的D-π-A框架中实现出色的NLO响应的有效方法。这些发现可为基于CNT的新型高性能NLO材料的设计提供有价值的信息。

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