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September 5, 2011Applied Physics Letters779 citationsOpen Access

Low-temperature photocarrier dynamics in monolayer MoS2

TKTobias KornSHS. HeydrichMHM. Hirmer

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Abstract

The band structure of MoS2 strongly depends on the number of layers, and a transition from indirect to direct-gap semiconductor has been observed recently for a single layer of MoS2. Single-layer MoS2 therefore becomes an efficient emitter of photoluminescence even at room temperature. Here, we report on scanning Raman and on temperature-dependent, as well as time-resolved photoluminescence measurements on single-layer MoS2 flakes prepared by exfoliation. We observe the emergence of two distinct photoluminescence peaks at low temperatures. The photocarrier recombination at low temperatures occurs on the few-picosecond timescale, but with increasing temperatures, a biexponential photoluminescence decay with a longer-lived component is observed.

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Cite This Study

Korn et al. (2011) studied this question.

synapsesocial.com/papers/69d98f4d9a6164e50fa3d0cehttps://doi.org/10.1063/1.3636402
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