The search for new thermoelectric materials has gained rapid progress in recent years as thermoelectric technology offers the potential for environmentally friendly and sustainable energy conversion methods from waste heat to electricity. In this work, we use first-principles calculations based on density functional theory to predict high thermoelectric performance in BaAu2P4, a layered Zintl compound with a small band gap. BaAu2P4 exhibits crystallographic heterogeneity in which rigid [Au2P4]2– units are separated by layers of Ba2+ cations, which are bonded relatively weakly to the lattice through electrostatic interactions. The phosphorus atoms are covalently bonded to each other and form infinite chains within the crystal. While the phos...
Development of efficient thermoelectric materials requires a designing approach that leads to excell...
Thermoelectric materials allow for the interconversion of heat and electricity. Rapid progress has b...
By combining first principles density functional theory and electronic as well as lattice Boltzmann ...
Identifying materials with intrinsically high thermoelectric performance remains a challenge even wi...
Identifying materials with intrinsically high thermoelectric performance remains a challenge even wi...
The thermoelectric figures of merit of bulk materials up to date have not overcome zT = 3, and only ...
In the search for better thermoelectric materials, metal phosphides have not been considered to be v...
Barium gold polyphosphide BaAu<sub>2</sub>P<sub>4</sub> was synthesized from elements and structural...
Understanding the lattice dynamics and low thermal conductivities of IV–VI, V[subscript 2]–VI[subscr...
Efficiency in generation and utilization of energy is highly dependent on materials that have the ab...
Thermoelectric materials, which enable direct conversion between thermal and electrical energy, prov...
First-principles calculations can accelerate the search for novel high-performance thermoelectric ma...
We present a theoretical study of the thermoelectric efficiency of “interlaced crystals”, recently d...
First-principles calculations were carried out to study the structural, mechanical, dynamical and tr...
We report a first-principles density-functional study of electron-phonon interactions in and thermoe...
Development of efficient thermoelectric materials requires a designing approach that leads to excell...
Thermoelectric materials allow for the interconversion of heat and electricity. Rapid progress has b...
By combining first principles density functional theory and electronic as well as lattice Boltzmann ...
Identifying materials with intrinsically high thermoelectric performance remains a challenge even wi...
Identifying materials with intrinsically high thermoelectric performance remains a challenge even wi...
The thermoelectric figures of merit of bulk materials up to date have not overcome zT = 3, and only ...
In the search for better thermoelectric materials, metal phosphides have not been considered to be v...
Barium gold polyphosphide BaAu<sub>2</sub>P<sub>4</sub> was synthesized from elements and structural...
Understanding the lattice dynamics and low thermal conductivities of IV–VI, V[subscript 2]–VI[subscr...
Efficiency in generation and utilization of energy is highly dependent on materials that have the ab...
Thermoelectric materials, which enable direct conversion between thermal and electrical energy, prov...
First-principles calculations can accelerate the search for novel high-performance thermoelectric ma...
We present a theoretical study of the thermoelectric efficiency of “interlaced crystals”, recently d...
First-principles calculations were carried out to study the structural, mechanical, dynamical and tr...
We report a first-principles density-functional study of electron-phonon interactions in and thermoe...
Development of efficient thermoelectric materials requires a designing approach that leads to excell...
Thermoelectric materials allow for the interconversion of heat and electricity. Rapid progress has b...
By combining first principles density functional theory and electronic as well as lattice Boltzmann ...