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在电子态和形态上均匀的单壁碳纳米管中带电激子的动力学。

Dynamics of charged excitons in electronically and morphologically homogeneous single-walled carbon nanotubes.

机构信息

Department of Chemistry, French Family Science Center, Duke University, Durham, NC 27708-0346.

Department of Chemistry, French Family Science Center, Duke University, Durham, NC 27708-0346

出版信息

Proc Natl Acad Sci U S A. 2018 Jan 23;115(4):674-679. doi: 10.1073/pnas.1712971115. Epub 2018 Jan 8.

Abstract

The trion, a three-body charge-exciton bound state, offers unique opportunities to simultaneously manipulate charge, spin, and excitation in one-dimensional single-walled carbon nanotubes (SWNTs) at room temperature. Effective exploitation of trion quasi-particles requires fundamental insight into their creation and decay dynamics. Such knowledge, however, remains elusive for SWNT trion states, due to the electronic and morphological heterogeneity of commonly interrogated SWNT samples, and the fact that transient spectroscopic signals uniquely associated with the trion state have not been identified. Here, we prepare length-sorted SWNTs and precisely control charge-carrier-doping densities to determine trion dynamics using femtosecond pump-probe spectroscopy. Identification of the trion transient absorptive hallmark enables us to demonstrate that trions () derive from a precursor excitonic state, () are produced via migration of excitons to stationary hole-polaron sites, and () decay in a first-order manner. Importantly, under appropriate carrier-doping densities, exciton-to-trion conversion in SWNTs can approach 100% at ambient temperature. Our findings open up possibilities for exploiting trions in SWNT optoelectronics, ranging from photovoltaics and photodetectors to spintronics.

摘要

三重子是一种三体电荷激子束缚态,它为在室温下同时操纵一维单壁碳纳米管 (SWNT) 中的电荷、自旋和激发提供了独特的机会。有效利用三重子准粒子需要对其产生和衰减动力学有基本的了解。然而,由于通常被探测的 SWNT 样品的电子和形态异质性,以及与三重子态唯一相关的瞬态光谱信号尚未被识别,因此,SWNT 三重子态的这种知识仍然难以捉摸。在这里,我们准备了长度排序的 SWNT,并精确控制电荷载流子掺杂密度,使用飞秒泵浦探测光谱来确定三重子动力学。三重子瞬态吸收特征的识别使我们能够证明三重子()源自前驱激子态,()是通过激子迁移到固定的空穴极化子位置产生的,()以一级方式衰减。重要的是,在适当的载流子掺杂密度下,SWNT 中的激子到三重子的转换在环境温度下可以接近 100%。我们的发现为在 SWNT 光电应用中利用三重子开辟了可能性,范围从光伏和光电探测器到自旋电子学。

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本文引用的文献

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Phys Rev Lett. 2012 Nov 2;109(18):187403. doi: 10.1103/PhysRevLett.109.187403. Epub 2012 Oct 31.
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