Publication | Open Access
Piezoelectric biaxial strain effects on the optical and photoluminescence spectra of 2D III–VI compound <b> <i>α</i> </b>-In2Se3 nanosheets
20
Citations
35
References
2020
Year
Optical MaterialsEngineeringPiezoelectric FieldOptoelectronic DevicesLuminescence PropertySemiconductor NanostructuresSemiconductorsIi-vi SemiconductorOptical PropertiesControllable Biaxial StrainPhotoluminescence SpectraPiezoelectric MaterialOptical SpectroscopyNanoscale ScienceConventional SemiconductorsNanophotonicsMaterials SciencePhotoluminescencePhysicsNanotechnologyPhotonic MaterialsOptoelectronic MaterialsPiezoelectricityOptoelectronicsApplied PhysicsFunctional Materials
The controllable biaxial strain is experimentally imposed on α-In2Se3 nanosheets by an electromechanical device. A redshift of Raman spectra is observed from the nanosheets under the strain. The Grüneisen parameter is calculated to analyze the strain effect on the vibrational behavior. Photoluminescence shows a blueshift, which can reach up to 215 meV per 1% strain. Such tunability of optical characteristics observed from α-In2Se3 nanosheets is much higher than that from conventional semiconductors. The physical mechanism behind the observation is investigated, which is related to the variations in the energy band and photoexcited carriers under a piezoelectric field and laser power.
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