By performing density functional theory-based ab initio calculations, Raman-active phonon modes of single-layer two-dimensional (2D) materials and the effect of in-plane biaxial strain on the peak frequencies and corresponding activities of the Raman-active modes are calculated. Our findings confirm the Raman spectrum of the unstrained 2D crystals and provide expected variations in the Raman-active modes of the crystals under in-plane biaxial strain. The results are summarized as follows: (i) frequencies of the phonon modes soften (harden) under applied tensile (compressive) strains; (ii) the response of the Raman activities to applied strain for the in-plane and out-of-plane vibrational modes have opposite trends, thus, the built-in strain...
We perform a thorough study of the strainology of the Raman response in graphene, for diff...
The false-color (3D type) image of the intensity of the Raman spectra of monolayer MoS2 versus both ...
We uncover the constitutive relation of graphene and probe the physics of its optical phonons by stu...
Sahin, Hasan/0000-0002-6189-6707; Senger, R. Tugrul/0000-0003-0800-1924; Sahin, Hasan/0000-0002-6189...
The concept of the phonon-mode Grüneisen tensor is reviewed as method to determine the elastic strai...
The variegated family of two-dimensional (2D) crystals has developed rapidly since the isolation of ...
We describe a facile technique based on polymer encapsulation to apply several percent (>5%) control...
In twisted van der Waals (vdW) bilayers, intrinsic strain associated with the moiré superlattice an...
Strain in a material induces shifts in vibrational frequencies, which is a probe of the nature of th...
The effect of strain on the phonon dispersion of bilayer graphene has been studied by polarized Rama...
Two-dimensional (2D) semiconducting layered materials have attracted widespread research interest re...
Due to its inherent exceptional mechanical flexibility and strength, graphene provides an ideal plat...
Two-dimensional (2D) crystals provides a material platform to explore the physics and chemistry at t...
In this work, the Raman shift of the single-phonon peaks in silicon is predicted from first principl...
Rhenium disulfide (ReS2) is a semiconducting two-dimensional material with marked in-plane structura...
We perform a thorough study of the strainology of the Raman response in graphene, for diff...
The false-color (3D type) image of the intensity of the Raman spectra of monolayer MoS2 versus both ...
We uncover the constitutive relation of graphene and probe the physics of its optical phonons by stu...
Sahin, Hasan/0000-0002-6189-6707; Senger, R. Tugrul/0000-0003-0800-1924; Sahin, Hasan/0000-0002-6189...
The concept of the phonon-mode Grüneisen tensor is reviewed as method to determine the elastic strai...
The variegated family of two-dimensional (2D) crystals has developed rapidly since the isolation of ...
We describe a facile technique based on polymer encapsulation to apply several percent (>5%) control...
In twisted van der Waals (vdW) bilayers, intrinsic strain associated with the moiré superlattice an...
Strain in a material induces shifts in vibrational frequencies, which is a probe of the nature of th...
The effect of strain on the phonon dispersion of bilayer graphene has been studied by polarized Rama...
Two-dimensional (2D) semiconducting layered materials have attracted widespread research interest re...
Due to its inherent exceptional mechanical flexibility and strength, graphene provides an ideal plat...
Two-dimensional (2D) crystals provides a material platform to explore the physics and chemistry at t...
In this work, the Raman shift of the single-phonon peaks in silicon is predicted from first principl...
Rhenium disulfide (ReS2) is a semiconducting two-dimensional material with marked in-plane structura...
We perform a thorough study of the strainology of the Raman response in graphene, for diff...
The false-color (3D type) image of the intensity of the Raman spectra of monolayer MoS2 versus both ...
We uncover the constitutive relation of graphene and probe the physics of its optical phonons by stu...