Thermoelectric devices that utilize the Seebeck effect convert heat flow into electrical energy and are highly desirable for the development of portable, solid state, passively powered electronic systems. The conversion efficiencies of such devices are quantified by the dimensionless thermoelectric figure of merit (ZT), which is proportional to the ratio of a device’s electrical conductance to its thermal conductance. In this paper, a recently fabricated two-dimensional (2D) semiconductor called phosphorene (monolayer black phosphorus) is assessed for its thermoelectric capabilities. First-principles and model calculations reveal not only that phosphorene possesses a spatially anisotropic electrical conductance, but that its lattice thermal...
The waste heat generated by car engines, power plants, home furnaces and other fossil fuel-burning m...
Using the tight-binding approach, we investigate the thermoelectric (TE) properties of rectangular p...
Phosphorene, a two-dimensional material exfoliated from black phosphorus (BP), is a promising p-type...
Two-dimensional semiconductor materials with puckered structure offer a novel playground to implemen...
Two-dimensional semiconductor materials with puckered structure offer a novel playground to implemen...
Electronic, phononic, and thermoelectric transport properties of single layer black- and blue-phosph...
We performed density functional theory calculations to investigate the thermoelectric properties of ...
Identifying materials with intrinsically high thermoelectric performance remains a challenge even wi...
Identifying materials with intrinsically high thermoelectric performance remains a challenge even wi...
<p>Using first principles calculations, we predict the thermal conductivity of the two-dimensional m...
In recent years, two-dimensional black phosphorus (BP) has seen a surge of research because of its u...
The monolayer of black phosphorus, or “phosphorene,” has recently emerged as a two-dimensional semic...
Thermoelectric materials allow for the interconversion of heat and electricity. Rapid progress has b...
Direct conversion of heat into electricity through advanced thermoelectric (TE) materials has been o...
In the search for better thermoelectric materials, metal phosphides have not been considered to be v...
The waste heat generated by car engines, power plants, home furnaces and other fossil fuel-burning m...
Using the tight-binding approach, we investigate the thermoelectric (TE) properties of rectangular p...
Phosphorene, a two-dimensional material exfoliated from black phosphorus (BP), is a promising p-type...
Two-dimensional semiconductor materials with puckered structure offer a novel playground to implemen...
Two-dimensional semiconductor materials with puckered structure offer a novel playground to implemen...
Electronic, phononic, and thermoelectric transport properties of single layer black- and blue-phosph...
We performed density functional theory calculations to investigate the thermoelectric properties of ...
Identifying materials with intrinsically high thermoelectric performance remains a challenge even wi...
Identifying materials with intrinsically high thermoelectric performance remains a challenge even wi...
<p>Using first principles calculations, we predict the thermal conductivity of the two-dimensional m...
In recent years, two-dimensional black phosphorus (BP) has seen a surge of research because of its u...
The monolayer of black phosphorus, or “phosphorene,” has recently emerged as a two-dimensional semic...
Thermoelectric materials allow for the interconversion of heat and electricity. Rapid progress has b...
Direct conversion of heat into electricity through advanced thermoelectric (TE) materials has been o...
In the search for better thermoelectric materials, metal phosphides have not been considered to be v...
The waste heat generated by car engines, power plants, home furnaces and other fossil fuel-burning m...
Using the tight-binding approach, we investigate the thermoelectric (TE) properties of rectangular p...
Phosphorene, a two-dimensional material exfoliated from black phosphorus (BP), is a promising p-type...