4.8 Article

Exciton Dynamics in MoS2-Pentacene and WSe2-Pentacene Heterojunctions

期刊

ACS NANO
卷 16, 期 10, 页码 16668-16676

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acsnano.2c06144

关键词

transition metal dichalcogenides; organic semiconductors; pentacene; exciton dynamics; transient reflection spectroscopy; MoS2; WSe2

资金

  1. European Union's Horizon 2020 Research and Innovation Program FLAG-ERA JTC 2017 [680-91-313]
  2. Deutsche Forschungsgemeinschaft (DFG) [NI 632/6-1, TU149/9-1, 397373225, INST 275/257-1 FUGG, 313713174]
  3. CRC 1375 NOA [398816777, SPP2244, TU149/13-1, 443361515]
  4. Bavarian State Ministry of Science, Research and Arts
  5. European Union [GINOP-2.3.6-15-2015-00001]
  6. European Regional Development Fund

向作者/读者索取更多资源

We measured exciton dynamics in van der Waals heterojunctions of TMDCs and OSs. The results showed slower hole transfer rates in A-exciton decay in MoS2-pentacene heterojunctions compared to previously reported results. However, faster hole transfer rates were observed in B-exciton decay in WSe2-pentacene heterojunctions. Our work provides important insights into excitonic dynamics in TMDC-OS heterojunctions.
We measured the exciton dynamics in van der Waals heterojunctions of transition metal dichalcogenides (TMDCs) and organic semiconductors (OSs). TMDCs and OSs are semiconducting materials with rich and highly diverse optical and electronic properties. Their heterostructures, exhibiting van der Waals bonding at their interfaces, can be utilized in the field of optoelectronics and photovoltaics. Two types of heterojunctions, MoS2-pentacene and WSe2-pentacene, were prepared by layer transfer of 20 nm pentacene thin films as well as MoS2 and WSe2 monolayer crystals onto Au surfaces. The samples were studied by means of transient absorption spectroscopy in the reflectance mode. We found that A-exciton decay by hole transfer from MoS2 to pentacene occurs with a characteristic time of 21 +/- 3 ps. This is slow compared to previously reported hole transfer times of 6.7 ps in MoS2-pentacene junctions formed by vapor deposition of pentacene molecules onto MoS2 on SiO2. The B-exciton decay in WSe2 shows faster hole transfer rates for WSe2-pentacene heterojunctions, with a characteristic time of 7 +/- 1 ps. The A-exciton in WSe2 also decays faster due to the presence of a pentacene overlayer; however, fitting the decay traces did not allow for the unambiguous assignment of the associated decay time. Our work provides important insights into excitonic dynamics in the growing field of TMDC-OS heterojunctions.

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