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Thermophotovoltaic (TPV) cells are increasingly attractive for applications in industrial waste heat harvesting, aerospace energy management, and compact power generation. Deploying midwave-infrared (MWIR) TPV in practical applications…

A new approach is introduced to significantly improve the performance of thermophotovoltaic (TPV) systems by using low-dimensional thermal emitters and photovoltaic (PV) cells. By reducing the thickness of both the emitter and the PV cell,…

We report the fabrication and measurement of thermophotovoltaic (TPV) cells with efficiencies of >40%, which is a record high TPV efficiency and the first experimental demonstration of the efficiency of high-bandgap tandem TPV cells. TPV…

Imparting and maintaining surface superhydrophobicity is receiving significant research attention over the last several years, driven by a broad range of important applications and enabled by advancements in materials and surface…

A standardized method for measuring thermophotovoltaic (TPV) efficiency has not been yet established, which makes the reported results difficult to compare. Besides, most of the TPV efficiencies reported to date have been obtained using…

Applied Physics · Physics 2022-11-03 Esther López , Irene Artacho , Alejandro Datas

Thermophotovoltaic systems in principle enable utilization of heat that is usually regarded as wasted energy. However, the wavelength selectivity of the thermal emitter required for high efficiencies is rather difficult to control with…

Applied Physics · Physics 2019-06-14 Masahiro Suemitsu , Takashi Asano , Takuya Inoue , Susumu Noda

The key feature of a thermophotovoltaic (TPV) emitter is the enhancement of thermal emission corresponding to energies just above the bandgap of the absorbing photovoltaic cell and simultaneous suppression of thermal emission below the…

The challenge in solar energy today is not the cost of photovoltaic (PV) electricity generation, already competing with fossil fuel prices, but rather utility-scale energy storage and flexibility in supply. Low-cost thermal energy storage…

We formulate, solve computationally and study experimentally the problem of collecting solar energy in three dimensions(1-5). We demonstrate that absorbers and reflectors can be combined in the absence of sun tracking to build…

Computational Physics · Physics 2012-03-13 Marco Bernardi , Nicola Ferralis , Jin H. Wan , Rachelle Villalon , Jeffrey C. Grossman

Thermophotovoltaics (TPVs) have the potential to exhibit higher power conversion efficiencies than traditional photovoltaics (PVs), with a broad range of applicability from waste recovery systems to aerospace solutions. They operate by…

Applied Physics · Physics 2024-10-29 Declan Kopper , Marina S. Leite

Transverse magnetohydrodynamic (MHD) waves have been shown to be ubiquitous in the solar atmosphere and can in principle carry sufficient energy to generate and maintain the Sun's million-degree outer atmosphere or corona. However, direct…

Solar and Stellar Astrophysics · Physics 2015-08-19 Takenori J. Okamoto , Patrick Antolin , Bart De Pontieu , Han Uitenbroek , Tom Van Doorsselaere , Takaaki Yokoyama

Single-junction photovoltaic cells are considered to be efficient solar energy converters, but even ideal cells cannot exceed the their fundamental thermodynamic efficiency limit, first analysed by Shockley and Queisser (SQ). For moderated…

Optics · Physics 2015-05-21 Assaf Manor , Carmel Rotschild

A huge amount of thermal energy is available close to material surfaces in radiative and non-radiative states, which can be useful for matter characterization or for energy devices. One way to harness this near-field energy is to scatter it…

Applied Physics · Physics 2021-10-15 C Lucchesi , D. Cakiroglu , J. -P Perez , T. Taliercio , E. Tournié , P. -O Chapuis , Rodolphe Vaillon

Photovoltaics (PVs) are a critical technology for curbing growing levels of anthropogenic greenhouse gas emissions, and meeting increases in future demand for low-carbon electricity. In order to fulfil ambitions for net-zero carbon dioxide…

Applied Physics · Physics 2024-08-29 James C. Blakesley , Ruy S. Bonilla , Marina Freitag , Alex M. Ganose , Nicola Gasparini , Pascal Kaienburg , George Koutsourakis , Jonathan D. Major , Jenny Nelson , Nakita K. Noel , Bart Roose , Jae Sung Yun , Simon Aliwell , Pietro P. Altermatt , Tayebeh Ameri , Virgil Andrei , Ardalan Armin , Diego Bagnis , Jenny Baker , Hamish Beath , Mathieu Bellanger , Philippe Berrouard , Jochen Blumberger , Stuart A. Boden , Hugo Bronstein , Matthew J. Carnie , Chris Case , Fernando A. Castro , Yi-Ming Chang , Elmer Chao , Tracey M. Clarke , Graeme Cooke , Pablo Docampo , Ken Durose , James R. Durrant , Marina R. Filip , Richard H. Friend , Jarvist M. Frost , Elizabeth A. Gibson , Alexander J. Gillett , Pooja Goddard , Severin N. Habisreutinger , Martin Heeney , Arthur D. Hendsbee , Louise C. Hirst , M. Saiful Islam , K. D. G. Imalka Jayawardena , Michael B. Johnston , Matthias Kauer , Jeff Kettle , Ji-Seon Kim , Dan Lamb , David Lidzey , Jihoo Lim , Roderick MacKenzie , Nigel Mason , Iain McCulloch , Keith P. McKenna , Sebastian B. Meier , Paul Meredith , Graham Morse , John D. Murphy , Chris Nicklin , Paloma Ortega-Arriaga , Thomas Osterberg , Jay B. Patel , Anthony Peaker , Moritz Riede , Martyn Rush , James W. Ryan , David O. Scanlon , Peter J. Skabara , Franky So , Henry J. Snaith , Ludmilla Steier , Jarla Thiesbrummel , Alessandro Troisi , Craig Underwood , Karsten Walzer , Trystan Watson , J. Michael Walls , Aron Walsh , Lucy D. Whalley , Benedict Winchester , Samuel D. Stranks , Robert L. Z. Hoye

Using metamaterial absorbers, we have shown that metallic layers in the absorbers do not necessarily constitute undesired resistive heating problem for photovoltaics. Tailoring the geometric skin depth of metals and employing the natural…

A galvanic displacement reaction-based, room-temperature "dip-and-dry" technique is demonstrated for fabricating selectively solar-absorbing plasmonic nanostructure-coated foils (PNFs). The technique, which allows for facile tuning of the…

Recent success in synthesizing thermally stable nanofluids at low costs is a significant breakthrough in the evolution of volumetric absorption based solar thermal systems. However, we have yet not been able to clearly identify the range of…

Applied Physics · Physics 2019-11-13 Apoorva Singh , Manish Kumar , Vikrant Khullar

We theoretically show that a thermophotovoltaic (TPV) system enhanced by a wire metamaterial opens the door to a prospective microgap thermophotovoltaics which will combine high electric output with relatively low temperatures of the…

Mesoscale and Nanoscale Physics · Physics 2018-09-26 M. S. Mirmoosa , M. Omelyanovich , C. R. Simovski

The decrease of solar cell efficiency with temperature is a known problem for photovoltaics (PV). Temperature sensitivity can lead to a considerable amount of energy losses over the lifetime of solar panels. In this perspective Hybrid…

Applied Physics · Physics 2023-11-01 Bruno Lorenzi , Paolo Mariani , Andrea Reale , Aldo Di Carlo , Gang Chen , Dario Narducci

Precise control of temperature fields at the micro- and nanoscale is essential for emerging applications in nanophotonics, catalysis, and microfluidics, yet remains difficult due to the diffusive nature of heat. While inverse-design…

Optics · Physics 2025-10-20 Gopal Narmada Naidu , Omer Can Karaman , Giulia Tagliabue