We present a Raman-scattering study of the interlayer and intralayer E2g Raman-active modes of hexagonal boron nitride (h−BN) under hydrostatic pressure for pressures up to the transition to the wurtzite phase (10.5 GPa). Pressure coefficients and Grüneisen parameters are determined for both modes, and are compared to ab initio calculations based on density functional perturbation theory. The pressure coefficient of the low-energy interlayer mode is higher than that of the high-energy intralayer mode owing to the large compressibility of the h−BN crystal along the c direction. Both modes exhibit a sublinear phonon frequency increase with pressure, which is more marked in the case of the low-energy mode. The intensity of the low-energy mode ...
We have used Raman spectroscopy to study the behavior of multi-walled boron nitride nanotubes and he...
International audienceWurtzite Boron Nitride ($w$BN) is a wide band gap BN polymorph with peculiar m...
This paper presents a detailed study of boron nitride modifications at hydrostatic pressures. Cohesi...
High pressure Raman experiments on boron nitride multi-walled nanotubes show that the intensity of t...
International audienceWe present an infrared reflectance and transmission study of a pressure-induce...
9th International Conference on Low Dimensional Structures and Devices in Puerto Varas (Chile), 2-6 ...
The pressure dependence of the direct and indirect bandgap transitions of hexagonal boron nitride is...
International audienceThe pressure dependence of the direct and indirect bandgap transitions of hexa...
We investigate the highly anisotropic behavior of the in-plane and out-of-plane infrared-active phon...
58th European High Pressure Research Group Meeting, 9-11, september 2020, Puerto de la Cruz,Tenerife...
Copyright (2011) American Institute of Physics. This article may be downloaded for personal use only...
The structural, electronic, elastic and vibrational properties of boron nitride (BN) were analyzed u...
Hexagonal boron nitride (h-BN) exhibits a wide indirect bandgap of 5.955 eV, as recently demonstrate...
Indium nitride under high pressure up to 50 GPa was analyzed by means of Raman spectroscopy. The wur...
We have used Raman spectroscopy to study the behavior of multi-walled boron nitride nanotubes and he...
We have used Raman spectroscopy to study the behavior of multi-walled boron nitride nanotubes and he...
International audienceWurtzite Boron Nitride ($w$BN) is a wide band gap BN polymorph with peculiar m...
This paper presents a detailed study of boron nitride modifications at hydrostatic pressures. Cohesi...
High pressure Raman experiments on boron nitride multi-walled nanotubes show that the intensity of t...
International audienceWe present an infrared reflectance and transmission study of a pressure-induce...
9th International Conference on Low Dimensional Structures and Devices in Puerto Varas (Chile), 2-6 ...
The pressure dependence of the direct and indirect bandgap transitions of hexagonal boron nitride is...
International audienceThe pressure dependence of the direct and indirect bandgap transitions of hexa...
We investigate the highly anisotropic behavior of the in-plane and out-of-plane infrared-active phon...
58th European High Pressure Research Group Meeting, 9-11, september 2020, Puerto de la Cruz,Tenerife...
Copyright (2011) American Institute of Physics. This article may be downloaded for personal use only...
The structural, electronic, elastic and vibrational properties of boron nitride (BN) were analyzed u...
Hexagonal boron nitride (h-BN) exhibits a wide indirect bandgap of 5.955 eV, as recently demonstrate...
Indium nitride under high pressure up to 50 GPa was analyzed by means of Raman spectroscopy. The wur...
We have used Raman spectroscopy to study the behavior of multi-walled boron nitride nanotubes and he...
We have used Raman spectroscopy to study the behavior of multi-walled boron nitride nanotubes and he...
International audienceWurtzite Boron Nitride ($w$BN) is a wide band gap BN polymorph with peculiar m...
This paper presents a detailed study of boron nitride modifications at hydrostatic pressures. Cohesi...