Strain is an effective tool to tune the optoelectronic properties of two-dimensional materials. Here, the authors demonstrate that second harmonic generation can be used to extract the full strain tensor of MoS2 and to spatially image its two-dimensional strain field
Second-order nonlinear optical interactions, including second-harmonic generation (SHG) and sum-freq...
Two-dimensional materials such as transitional metal dichalcogenides exhibit unique optical and elec...
We report the influence of uniaxial tensile mechanical strain in the range 0–2.2% on the phonon spec...
Abstract Two-dimensional (2D) condensed matter is a material that is restricted in on...
Second-harmonic generation (SHG) is a powerful measurement technique to analyze the symmetry propert...
Strain serves as a powerful freedom to effectively, reversibly, and continuously engineer the physic...
"Strain engineering" in functional materials has been widely explored to tailor the physical propert...
The variegated family of two-dimensional (2D) crystals has developed rapidly since the isolation of ...
Two-dimensional (2D) crystals provides a material platform to explore the physics and chemistry at t...
Strain engineering has arisen as a powerful technique to tune the electronic and optical properties ...
Single-layer MoS2 is a direct-gap semiconductor whose electronic band structure strongly depends on ...
One of the fascinating properties of the new families of two-dimensional crystals is their high stre...
Tip-enhanced Raman spectroscopy (TERS) has been rapidly improved over the past decade and opened up ...
The realization of ordered strain fields in 2D crystals is an intriguing perspective in many respect...
When bulk structures are thinned down to their monolayers, degree of orbital interactions, mechanica...
Second-order nonlinear optical interactions, including second-harmonic generation (SHG) and sum-freq...
Two-dimensional materials such as transitional metal dichalcogenides exhibit unique optical and elec...
We report the influence of uniaxial tensile mechanical strain in the range 0–2.2% on the phonon spec...
Abstract Two-dimensional (2D) condensed matter is a material that is restricted in on...
Second-harmonic generation (SHG) is a powerful measurement technique to analyze the symmetry propert...
Strain serves as a powerful freedom to effectively, reversibly, and continuously engineer the physic...
"Strain engineering" in functional materials has been widely explored to tailor the physical propert...
The variegated family of two-dimensional (2D) crystals has developed rapidly since the isolation of ...
Two-dimensional (2D) crystals provides a material platform to explore the physics and chemistry at t...
Strain engineering has arisen as a powerful technique to tune the electronic and optical properties ...
Single-layer MoS2 is a direct-gap semiconductor whose electronic band structure strongly depends on ...
One of the fascinating properties of the new families of two-dimensional crystals is their high stre...
Tip-enhanced Raman spectroscopy (TERS) has been rapidly improved over the past decade and opened up ...
The realization of ordered strain fields in 2D crystals is an intriguing perspective in many respect...
When bulk structures are thinned down to their monolayers, degree of orbital interactions, mechanica...
Second-order nonlinear optical interactions, including second-harmonic generation (SHG) and sum-freq...
Two-dimensional materials such as transitional metal dichalcogenides exhibit unique optical and elec...
We report the influence of uniaxial tensile mechanical strain in the range 0–2.2% on the phonon spec...