High temperature stable selective emitters can significantly increase efficiency and radiative power in thermophotovoltaic (TPV) systems. However, optical properties of structured emitters reported so far degrade at temperatures approaching 1200 °C due to various degradation mechanisms. We have realized a 1D structured emitter based on a sputtered W-HfO 2 layered metamaterial and demonstrated desired band edge spectral properties at 1400 °C. To the best of our knowledge the temperature of 1400 °C is the highest reported for a structured emitter, so far. The spatial confinement and absence of edges stabilizes the W-HfO 2 multilayer system to temperatures unprecedented for other nanoscaled W-structures. Only when this confinement is broken W ...
In this paper, a one - dimensional microstructure tungsten grating (pyramids) is optimized for poten...
Smart radiative cooling devices based on thermochromic materials such as vanadium dioxide (VO2) are ...
In this work, we theoretically analyze the performance characteristics of a near-field thermophotovo...
Commercial deployment of thermophotovoltaics (TPV) is lacking behind the implementation of solar PV ...
Control of thermal radiation at high temperatures is vital for waste heat recovery and for high-effi...
Solar energy promises a viable solution to meet the ever-increasing power demand by providing a clea...
Tailoring the spectrum of thermal emission from the emitter is important for improving the performan...
Selective thermal emitters concentrate most of their spontaneous emission in a spectral band much na...
For maximized energy conversion efficiency on thermophotovoltaic (TPV) systems, 2D photonic crystal ...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Electrical Engineering and Comp...
Metamaterial thermal emitters based on gold nanowire cavities on a gold substrate are designed to ac...
Combining an understanding of thin films and structure/property relationships, photonic nano-structu...
Thermal emitters play a key role in controlling the thermal radiation emitted in thermophotovoltaic ...
In this study, a tungsten-SiO2-based metal⁻insulator⁻metal-structured metasurface for th...
Building consumes up to 33% of the global energy. HVAC systems for heating and cooling purposes are ...
In this paper, a one - dimensional microstructure tungsten grating (pyramids) is optimized for poten...
Smart radiative cooling devices based on thermochromic materials such as vanadium dioxide (VO2) are ...
In this work, we theoretically analyze the performance characteristics of a near-field thermophotovo...
Commercial deployment of thermophotovoltaics (TPV) is lacking behind the implementation of solar PV ...
Control of thermal radiation at high temperatures is vital for waste heat recovery and for high-effi...
Solar energy promises a viable solution to meet the ever-increasing power demand by providing a clea...
Tailoring the spectrum of thermal emission from the emitter is important for improving the performan...
Selective thermal emitters concentrate most of their spontaneous emission in a spectral band much na...
For maximized energy conversion efficiency on thermophotovoltaic (TPV) systems, 2D photonic crystal ...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Electrical Engineering and Comp...
Metamaterial thermal emitters based on gold nanowire cavities on a gold substrate are designed to ac...
Combining an understanding of thin films and structure/property relationships, photonic nano-structu...
Thermal emitters play a key role in controlling the thermal radiation emitted in thermophotovoltaic ...
In this study, a tungsten-SiO2-based metal⁻insulator⁻metal-structured metasurface for th...
Building consumes up to 33% of the global energy. HVAC systems for heating and cooling purposes are ...
In this paper, a one - dimensional microstructure tungsten grating (pyramids) is optimized for poten...
Smart radiative cooling devices based on thermochromic materials such as vanadium dioxide (VO2) are ...
In this work, we theoretically analyze the performance characteristics of a near-field thermophotovo...