The influence of the structure type on the boron nitride (BN) properties such as excellent thermal and chemical stability and super hardness is well known. The effect of aluminum addition on four different structure types of boron nitride (wurtzite, h-BN, sphalerite, and rock salt) and its electronic properties have been investigated in our study. Here we present an ab initio study of the B1-xAlxN solid solutions for (x = 0; 0.125; 0.25; 0.375 and 0.5), and corresponding structure-property relationship. Novel structures have been discovered in new Al-rich boron nitride compounds and some of them indicate AlN-BN layer separation. Electronic properties have been studied in great detail using hybrid B3LYP approximation. Present results sugge...
The interaction of boron nitride nanotubes (BNNTs) with Al has been investigated by means of quantum...
Although it has been predicted that boron nitride clusters (i.e., BiNi, i = 12-24) are capable of fo...
Boron nitride (BN) and carbon are chemical analogues of each other and share similar structures such...
Aluminum nitride (AlN) and boron nitride (BN) are well-known ceramic materials with numerous valuabl...
First principles total energy calculations were carried out to investigate structural and electronic...
Boron, B, has many interesting electronic and structural properties, which makes it an ideal materia...
Aluminum nitride (AlN) is a compound with wide technological applications from optics to electronics...
The interaction of boron nitride nanotubes (BNNTs) with Al has been investigated by means of quantum...
Ab initio calculations using hybrid B3LYP functional were performed in order to investigate structur...
Electronic properties of aluminum nitride in wurtzite, zinc-blende, and rock-salt phases are investi...
The electronic structure of the wurtzite-type phase of aluminum nitride has been investigated by mea...
Density functional theory calculations are employed to investigate B incorporation at the GaN(0001) ...
Boron nitride (BN) is in many respects similar to the elementary carbon. BN exists in 4 crystalline ...
Defence is held on 11.6.2021 15:00 – 19:00 Zoom, https://aalto.zoom.us/j/66334552243Hexagonal bor...
First-principles calculations have been used to investigate the structural and electronic properties...
The interaction of boron nitride nanotubes (BNNTs) with Al has been investigated by means of quantum...
Although it has been predicted that boron nitride clusters (i.e., BiNi, i = 12-24) are capable of fo...
Boron nitride (BN) and carbon are chemical analogues of each other and share similar structures such...
Aluminum nitride (AlN) and boron nitride (BN) are well-known ceramic materials with numerous valuabl...
First principles total energy calculations were carried out to investigate structural and electronic...
Boron, B, has many interesting electronic and structural properties, which makes it an ideal materia...
Aluminum nitride (AlN) is a compound with wide technological applications from optics to electronics...
The interaction of boron nitride nanotubes (BNNTs) with Al has been investigated by means of quantum...
Ab initio calculations using hybrid B3LYP functional were performed in order to investigate structur...
Electronic properties of aluminum nitride in wurtzite, zinc-blende, and rock-salt phases are investi...
The electronic structure of the wurtzite-type phase of aluminum nitride has been investigated by mea...
Density functional theory calculations are employed to investigate B incorporation at the GaN(0001) ...
Boron nitride (BN) is in many respects similar to the elementary carbon. BN exists in 4 crystalline ...
Defence is held on 11.6.2021 15:00 – 19:00 Zoom, https://aalto.zoom.us/j/66334552243Hexagonal bor...
First-principles calculations have been used to investigate the structural and electronic properties...
The interaction of boron nitride nanotubes (BNNTs) with Al has been investigated by means of quantum...
Although it has been predicted that boron nitride clusters (i.e., BiNi, i = 12-24) are capable of fo...
Boron nitride (BN) and carbon are chemical analogues of each other and share similar structures such...