Layer-dependent signatures for exciton dynamics in monolayer and multilayer WSe2 revealed by fluorescence lifetime imaging measurement

IF 9.5 2区 材料科学 Q1 CHEMISTRY, PHYSICAL Nano Research Pub Date : 2020-02-12 DOI:10.1007/s12274-020-2670-7
Yuanshuang Liu, Huanglong Li, Cuicui Qiu, Xiangmin Hu, Dameng Liu
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引用次数: 11

Abstract

Two-dimensional (2D) transition-metal dichalcogenide (TMD) materials have aroused noticeable interest due to their distinguished electronic and optical properties. However, little is known about their complex exciton properties together with the exciton dynamics process which have been expected to influence the performance of optoelectronic devices. The process of fluorescence can well reveal the process of exciton transition after excitation. In this work, the room-temperature layer-dependent exciton dynamics properties in layered WSe2 are investigated by the fluorescence lifetime imaging microscopy (FLIM) for the first time. This paper focuses on two mainly kinds of excitons including the direct transition neutral excitons and trions. Compared with the lifetime of neutral excitons (< 0.3 ns within four-layer), trions possess a longer lifetime (~ 6.6 ns within four-layer) which increases with the number of layers. We attribute the longer-lived lifetime to the increasing number of trions as well as the varieties of trion configurations in thicker WSe2. Besides, the whole average lifetime increases over 10% when WSe2 flakes added up from monolayer to four-layer. This paper provides a novel tuneable layer-dependent method to control the exciton dynamics process and finds a relatively longer transition lifetime of trions at room temperature, enabling to investigate in the charge transport in TMD-based optoelectronics devices in the future.

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荧光寿命成像测量揭示了单层和多层WSe2中激子动力学的层依赖特征
二维(2D)过渡金属二硫化物(TMD)材料由于其独特的电子和光学特性而引起了人们的注意。然而,人们对它们复杂的激子特性以及激子动力学过程知之甚少,而激子动力学过程有望影响光电器件的性能。荧光过程可以很好地揭示激发后激子跃迁的过程。本文首次利用荧光寿命成像显微镜(FLIM)研究了层状WSe2的室温层依赖性激子动力学特性。本文主要讨论了直接跃迁中性激子和三角激子这两类激子。与中性激子的寿命(<三极子的寿命随着层数的增加而延长(四层内约6.6 ns)。我们将较长的寿命归因于较厚的WSe2中trions数量的增加以及trions构型的变化。此外,当WSe2薄片由单层增加到四层时,整个平均寿命增加了10%以上。本文提供了一种新颖的可调谐的层相关方法来控制激子动力学过程,并发现了室温下相对较长的trions跃迁寿命,为未来研究基于tmd的光电器件中的电荷输运提供了可能。
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来源期刊
Nano Research
Nano Research 化学-材料科学:综合
CiteScore
14.30
自引率
11.10%
发文量
2574
审稿时长
1.7 months
期刊介绍: Nano Research is a peer-reviewed, international and interdisciplinary research journal that focuses on all aspects of nanoscience and nanotechnology. It solicits submissions in various topical areas, from basic aspects of nanoscale materials to practical applications. The journal publishes articles on synthesis, characterization, and manipulation of nanomaterials; nanoscale physics, electrical transport, and quantum physics; scanning probe microscopy and spectroscopy; nanofluidics; nanosensors; nanoelectronics and molecular electronics; nano-optics, nano-optoelectronics, and nano-photonics; nanomagnetics; nanobiotechnology and nanomedicine; and nanoscale modeling and simulations. Nano Research offers readers a combination of authoritative and comprehensive Reviews, original cutting-edge research in Communication and Full Paper formats. The journal also prioritizes rapid review to ensure prompt publication.
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