
Nonlinear absorption, nonlinear scattering, and optical limiting properties of carbon nanotube/molybdenum diselenide organic glass
Author(s) -
Yan Sun,
Bin Qu,
Baogang Quan
Publication year - 2018
Publication title -
wuli xuebao
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.199
H-Index - 47
ISSN - 1000-3290
DOI - 10.7498/aps.67.20181583
Subject(s) - materials science , band gap , photoluminescence , photocurrent , absorption (acoustics) , attenuation coefficient , optoelectronics , optics , physics , composite material
Because MoSe 2 has broadband saturable absorption, and higher nonlinear refractive index. Compared with MoS 2 , thin-layered MoSe 2 possesses very attractive properties, including narrow bandgap, low optical absorption coefficient, and large spin-splitting energy at the top of the valence band. The narrow bandgap and low optical absorption coefficient could make MoSe 2 more applicable than MoS 2 . And the tunable excitation photoelectric effecthas great potential applications in the fields of photoluminescence, phototransistor, solar cells, nonlinear optics and other aspects. However, pure MoSe 2 has high photogenerated recombination rate, thus limiting its applications in some optical fields. By designing nanocomposites of MoSe 2 , the photogenerated recombination rate of these materials can be reduced and their application field can be broadened. In this work, MoSe 2 nanocomposites are prepared by simple methods. The two-dimensional layered MoSe 2 nanosheets are combined with nanorods. By integrating the surface effect, small size effect and interfacial effect of CNT, the optical nonlinearity and optical limiting performance of MoSe 2 composites are improved. The CNT/MoSe 2 composite nanomaterials are first synthesized based on narrower band gap and lower light absorption coefficient of MoS 2 than those of MoSe 2 by growing MoSe 2 nanoparticles on the surface of CNT through a solvothermal method, and then is dispersed in methyl methacrylate (MMA) to prepare an organic glass by a casting method, and the MMA is polymerized into poly (methyl methacrylate) (PMMA). The nonlinear absorption (NLA), nonlinear scattering (NLS) and optical limiting (OL) properties of the CNT/MoSe 2 /PMMA organic glass are studied by the modified Z-scan technique for the first time. The CNT/MoSe 2 /PMMA organic glass exhibits the saturable absorption (SA) and a changeover from SA to reverse saturable absorption by adjusting input energy. The experimental results show that the CNT/MoSe 2 /PMMA plexiglass exhibits better anti-saturation absorption and higher optical limiting properties than MoSe 2 /PMMA and CNT/PMMA plexiglass. Besides, the NLA and OL properties of the CNT/MoSe 2 /PMMA organic glass are enhanced compared with CNT/PMMA and MoSe 2 /PMMA organic glasses, which can be attributed to the existence of the C=C double bonds in CNTs, the layered structure of MoSe 2 nanosheets, and the interfacial charge transfer between CNTs and MoSe 2 . And the results demonstrate that the CNT/MoSe 2 /PMMA organic glass is very promising for optical devices such as optical limiters and mode-locked/ Q -switched lasers.