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封装水对碳纳米管发光能量、线宽和寿命的影响:时域从头算分析。

Influence of Encapsulated Water on Luminescence Energy, Line Width, and Lifetime of Carbon Nanotubes: Time Domain Ab Initio Analysis.

作者信息

Li Wei, Long Run, Hou Zhufeng, Tang Jianfeng, Prezhdo Oleg V

机构信息

College of Science , Hunan Agricultural University , Changsha 410128 , People's Republic of China.

Laboratory of Theoretical and Computational Chemistry, Institute of Theoretical Chemistry , Jilin University , Changchun 130023 , People's Republic of China.

出版信息

J Phys Chem Lett. 2018 Jul 19;9(14):4006-4013. doi: 10.1021/acs.jpclett.8b02049. Epub 2018 Jul 6.

Abstract

In a broad range of applications, carbon nanotubes (CNTs) are in direct contact with a condensed-phase environment that perturbs CNT properties. Experiments show that water molecules encapsulated inside of semiconducting CNTs reduce the electronic energy gap, enhance elastic and inelastic electron-phonon scattering, and shorten the excited-state lifetime. We rationalize the observed effects at the atomistic level using real-time time-dependent density functional theory combined with nonadiabatic molecular dynamics. Encapsulated water makes the nanotube more rigid, suppressing radial breathing modes while enhancing and slightly shifting the optical G-mode. Water screens Coulomb interactions and shifts charge carrier energies and wave functions. The screening, together with distortion of the CNT geometry and lifting of orbital degeneracy, produces a luminescence red shift. Enhanced elastic and inelastic electron-phonon scattering explains line width broadening and shortening of the excited-state lifetime. The influence of water on the CNT properties is similar to that of defects; however, in contrast to defects, water creates no new phonon modes or electronic states in the CNTs. The atomistic understanding of the influence of the condensed-phase environment on CNT optical, electronic, and vibrational properties, and electron-vibrational dynamics guides design of novel CNT-based materials.

摘要

在广泛的应用中,碳纳米管(CNT)与会干扰其性质的凝聚相环境直接接触。实验表明,封装在半导体碳纳米管内部的水分子会减小电子能隙,增强弹性和非弹性电子-声子散射,并缩短激发态寿命。我们使用实时含时密度泛函理论结合非绝热分子动力学在原子水平上对观察到的效应进行了合理解释。封装的水使纳米管更刚性,抑制了径向呼吸模式,同时增强并略微移动了光学G模式。水屏蔽了库仑相互作用,使电荷载流子能量和波函数发生位移。这种屏蔽作用,连同碳纳米管几何形状的畸变和轨道简并性的解除,产生了发光红移。增强的弹性和非弹性电子-声子散射解释了线宽展宽和激发态寿命的缩短。水对碳纳米管性质的影响与缺陷的影响相似;然而,与缺陷不同的是,水在碳纳米管中不会产生新的声子模式或电子态。对凝聚相环境对碳纳米管光学、电子和振动性质以及电子-振动动力学影响的原子层面理解,指导了新型碳纳米管基材料的设计。

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