Few-layer black phosphorus (BP) with an in-plane puckered crystalline structure has attracted intense interest for strain engineering due to both its significant anisotropy in mechanical and electrical properties and its high intrinsic strain limit. Here, we investigated the phonon response of few layer BP under uniaxial tensile strain (∼7%) with in situ polarized Raman spectroscopy. Together with the first-principles density functional theory (DFT) analysis, the anisotropic Poisson’s ratio in few-layer BP was verified as one of the primary factors that caused the large discrepancy in the trend of reported Raman frequency shift for strained BP, armchair (AC) direction in particular. By carefully including and excluding the anisotropic Poiss...
In this paper, we systematically studied the Raman vibration of black phosphorus (BP) transferred on...
As a new two-dimensional layered material, black phosphorus (BP) is a very promising material for na...
An optical anisotropic nature of black phosphorus (BP) is revealed by angle-resolved polarized Raman...
Abstract Strain engineering is a powerful strategy for tuning the optical, electrical, vibrational p...
Identification of the crystalline axis of anisotropic black phosphorus (BP) is important for investi...
Black phosphorus (BP), a layered material with puckered crystalline structure in each layer, has dra...
Anisotropic materials are characterized by a unique optical response, which is highly polarization-d...
We report high-pressure Raman experiments of black phosphorus up to 24 GPa. The linewidths of first-...
Newly fabricated few-layer black phosphorus and its monolayer structure, phosphorene, are expected t...
This Master’s project presents on the angular dependence of the intensity of the Raman active phonon...
Two-dimensional black phosphorus (BP) has attracted much interest as a promising semiconductor with ...
In this study, we correlated the angular dependence of the Raman response of black phosphorus to its...
Two-dimensional materials tend to become crumpled according to the Mermin-Wagner theorem, and the re...
The effect of strain on the phonon dispersion of bilayer graphene has been studied by polarized Rama...
xix, 150 pages : color illustrationsPolyU Library Call No.: [THS] LG51 .H577P AP 2017 LiDuring the p...
In this paper, we systematically studied the Raman vibration of black phosphorus (BP) transferred on...
As a new two-dimensional layered material, black phosphorus (BP) is a very promising material for na...
An optical anisotropic nature of black phosphorus (BP) is revealed by angle-resolved polarized Raman...
Abstract Strain engineering is a powerful strategy for tuning the optical, electrical, vibrational p...
Identification of the crystalline axis of anisotropic black phosphorus (BP) is important for investi...
Black phosphorus (BP), a layered material with puckered crystalline structure in each layer, has dra...
Anisotropic materials are characterized by a unique optical response, which is highly polarization-d...
We report high-pressure Raman experiments of black phosphorus up to 24 GPa. The linewidths of first-...
Newly fabricated few-layer black phosphorus and its monolayer structure, phosphorene, are expected t...
This Master’s project presents on the angular dependence of the intensity of the Raman active phonon...
Two-dimensional black phosphorus (BP) has attracted much interest as a promising semiconductor with ...
In this study, we correlated the angular dependence of the Raman response of black phosphorus to its...
Two-dimensional materials tend to become crumpled according to the Mermin-Wagner theorem, and the re...
The effect of strain on the phonon dispersion of bilayer graphene has been studied by polarized Rama...
xix, 150 pages : color illustrationsPolyU Library Call No.: [THS] LG51 .H577P AP 2017 LiDuring the p...
In this paper, we systematically studied the Raman vibration of black phosphorus (BP) transferred on...
As a new two-dimensional layered material, black phosphorus (BP) is a very promising material for na...
An optical anisotropic nature of black phosphorus (BP) is revealed by angle-resolved polarized Raman...