Yttrium nitride (YN) is a promising semiconductor for use in metal/semiconductor superlattices for thermoelectric applications. We determine its electronic structure, vibrational spectrum, and thermal properties using first-principles density functional theory (DFT) based simulations with a generalized gradient approximation (GGA) of the exchange correlation energy. We employ GGA+U and GW approximations in our calculations to (a) improve the accuracy of the calculation of bandgaps and (b) determine specific features of its electronic structure relevant to transport properties, such as transverse (m(t)*) and longitudinal (m(1)*) conduction band effective mass. To evaluate consequences of forming alloys of YN with other materials to its elect...
With a motivation to understand microscopic aspects of ScN, ZrN, and HfN relevant to the thermoelect...
First-principles calculations can accelerate the search for novel high-performance thermoelectric ma...
First-principles calculations can accelerate the search for novel high-performance thermoelectric ma...
Yttrium nitride (YN) is a promising semiconductor for use in metal/semiconductor superlattices for t...
Yttrium nitride (YN) is a promising semiconductor for use in metal/semiconductor superlattices for t...
We present first-principles calculations of the structural and lattice-dynamical properties for cubi...
Nitride-based metal/semiconductor superlattices are promising candidates for high-temperature thermo...
Nitride-based metal/semiconductor superlattices are promising candidates for high-temperature thermo...
We studied the structural, elastic, electronic, dynamic and optical properties of scandium and yttri...
Besides many other state of the art promising applications, transition metal (TM) nitride materials ...
We present a first-principles density functional theory-based analysis of the electronic structure, ...
The structural, elastic, electronic, phonon and thermodynamic properties of uranium nitride (UN) hav...
The structural, elastic, electronic, phonon and thermodynamic properties of uranium nitride (UN) hav...
With a motivation to understand microscopic aspects of ScN, ZrN, and HfN relevant to the thermoelect...
The present paper reports the structural, electronic, phonon and thermodynamical properties of some ...
With a motivation to understand microscopic aspects of ScN, ZrN, and HfN relevant to the thermoelect...
First-principles calculations can accelerate the search for novel high-performance thermoelectric ma...
First-principles calculations can accelerate the search for novel high-performance thermoelectric ma...
Yttrium nitride (YN) is a promising semiconductor for use in metal/semiconductor superlattices for t...
Yttrium nitride (YN) is a promising semiconductor for use in metal/semiconductor superlattices for t...
We present first-principles calculations of the structural and lattice-dynamical properties for cubi...
Nitride-based metal/semiconductor superlattices are promising candidates for high-temperature thermo...
Nitride-based metal/semiconductor superlattices are promising candidates for high-temperature thermo...
We studied the structural, elastic, electronic, dynamic and optical properties of scandium and yttri...
Besides many other state of the art promising applications, transition metal (TM) nitride materials ...
We present a first-principles density functional theory-based analysis of the electronic structure, ...
The structural, elastic, electronic, phonon and thermodynamic properties of uranium nitride (UN) hav...
The structural, elastic, electronic, phonon and thermodynamic properties of uranium nitride (UN) hav...
With a motivation to understand microscopic aspects of ScN, ZrN, and HfN relevant to the thermoelect...
The present paper reports the structural, electronic, phonon and thermodynamical properties of some ...
With a motivation to understand microscopic aspects of ScN, ZrN, and HfN relevant to the thermoelect...
First-principles calculations can accelerate the search for novel high-performance thermoelectric ma...
First-principles calculations can accelerate the search for novel high-performance thermoelectric ma...