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首页> 外文期刊>Journal of physical chemistry letters >Ultrafast Carrier Dynamics of the Exciton and Trion in MoS2 Monolayers Followed by Dissociation Dynamics in Au@MoS2 2D Heterointerfaces
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Ultrafast Carrier Dynamics of the Exciton and Trion in MoS2 Monolayers Followed by Dissociation Dynamics in Au@MoS2 2D Heterointerfaces

机译:超快载体动态的激子和Trion在MOS2单层中,随后在Au @ MOS2 2D异煤中解离动力学

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摘要

Many-body states like excitons, biexcitons, and trions play an important role in optoelectronic and photovoltaic applications in 2D materials. Herein, we studied carrier dynamics of excitons and trions in monolayer MoS2 deposited on a SiO2/Si substrate, before and after Au NP deposition, using femtosecond transient absorption spectroscopy. Luminescence measurements confirm the presence of both an exciton and trion in MoS2, which are drastically quenched after deposition of Au NPs, indicating electron transfer from photoexcited MoS2 to Au. Ultrafast study reveals that photogenerated free carriers form excitons with a time scale of similar to 500 fs and eventually turn into trions within similar to 1.2 ps. Dissociation of excitons and trions has been observed in the presence of Au, with time scales of similar to 600 fs and similar to 3.7 ps, respectively. Understanding the formation and dissociation dynamics of the exciton and trion in monolayer MoS2 is going to help immensely to design and develop many new 2D devices.
机译:像激子,Biexcitons和Trions这样的许多身体状态在2D材料中在光电和光伏应用中起着重要作用。在此,我们研究了使用飞秒瞬时吸收光谱沉积在SiO2 / Si底物上的单层MOS2上的激子和细胞的载体动力学。发光测量确认在MOS2中存在激子和TRION,在沉积Au nps之后,在沉积Au nps之后,将电子传递从光屏蔽MOS2到Au。超快的研究表明,光静脉的游离载体形成激子的时间等级与500 fs相似,最终变成类似于1.2 p的细胞。在Au的存在下观察到激子和细胞的解离,时间尺度类似于600 fs,并且分别类似于3.7 ps。了解Exciton和Trion在Monolayer MOS2中的形成和解散动态将有助于设计和开发许多新的2D设备。

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