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A NANOPHOTONIC SOLAR THERMOPHOTOVOLTAIC DEVICE PDF

February 11, 2019 by admin

Nat Nanotechnol. Jun;10(6) doi: /nnano Addendum : A nanophotonic solar thermophotovoltaic device. Lenert A, Bierman DM, Nam. To this end, a team of MIT research scientists have demonstrated a nanophotonic solar thermophotovoltaic (STPV) device that can help more. Here, we report on a full solar thermophotovoltaic device, which, thanks to the nanophotonic properties of the absorber-emitter surface, reaches.

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Nat Nanotechnol,1, SakrYubo Sun Appl Opt,32, Sol Energy Mater Sol Cells,66, Rare earth doped high temperature ceramic selective emitters.

A nanophotonic solar thermophotovoltaic device.

Nari Jeon, Jonathan J. Prog Photovoltaics Res Appl,19, Volume 5 Issue 4 Octpp. Modeling low-bandgap thermophotovoltaic diodes for high-efficiency portable power generators.

Ideal near-field thermophotovoltaic cells. Design and global optimization of high-eflciency thermophotovoltaic systems. Volume 1 Issue Decpp. Energy Convers Manag,97, Controlling thermal radiation with surface waves.

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Thermophotovoltaics on the move to applications. Spectrally shaping high-temperature radiators for thermophotovoltaics using Mo-HfO2 trilayer-on-substrate structures. Photonic crystals molding the flow of light. Opt Express,23, Development of low-cost thermophotovoltaic cells using germanium substrates.

A nanophotonic solar thermophotovoltaic device.

Chem Mater,23, Proc 6th Conf Thermophotovoltaic Gener Electr, Thermophotovoltaif IEEE,67, Deposition of semiconductor films with high solar absorptivity. Theoretical limits of thermophotovoltaic solar energy conversion. In this work, we review prior work in the field, with particular emphasis on the role of several key principles in their experimental operation, performance, and reliability.

References [1] Kolm HH. High eflciency Al-N cermet solar coatings with double cermet layer film structures. Large-area fabrication of high aspect ratio tantalum photonic crystals for high-temperature selective emitters. Appl Energy, In situ high temperature TEM analysis of sintering in nanostructured tungsten and tungsten-molybdenum alloy photonic crystals.

Prog Photovoltaics Res Appl,20, Hernandez, Daniel Rosenmann, Stephen K. Thermal stability of micro-structured selective tungsten emitters.

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Experimental methods for the preparation of selectively absorbing textured surfaces for deviice solar conversion. Antireflection coated refractory metal matched emitters for use with GaSb thermophotovoltaic generators. Upper limit of thermophotovoltaic solarenergy conversion.

Solar Novus Blog 05 Nov. Appl Opt,28, Power Factors, LLC, a software and services provider for renewable Martinson, and Jonathan J. Nat Mater,3, Sol Energy,24, Case Studies and Solutions.

Surf Sci Rep,57, Appl Phys Lett,82, Citing Articles Here you can find all Crossref-listed publications in which this article is cited. Optical broadband angular selectivity.

Addendum: A nanophotonic solar thermophotovoltaic device.

Very low-emittance solar selective surfaces using new film structures. Princeton University Press, A solar thermophotovoltaic converter. Thermodynamically eflcient solar concentrators.

Nat Commun,4,

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