A review on the integration of radiative cooling and solar energy harvesting
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- Type
- review
- Published
- 2021-05-04
- Cited by
- 108
- References
- 116
- OpenAlex
- https://openalex.org/W3157246177
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:235551678
Keywords
Radiative cooling, Photovoltaics, Photovoltaic system, Solar energy, Passive cooling
References
- Theoretical and Experimental Study of Spectral Selectivity Surface for Both Solar Heating and Radiative Cooling
- Assessing photovoltaic module degradation and lifetime from long term environmental tests
- Performance improvement of dry cooled advanced concentrating solar power plants using daytime radiative cooling
- Desiccant enhanced nocturnal radiative cooling-solar collector system for air comfort application in hot arid areas
- Reduction of reflection losses of PV-modules by structured surfaces
- Photovoltaic–thermal collectors for night radiative cooling of buildings
- Solar heating and radiative cooling using a solar collector-sky radiator with a spectrally selective surface
- ON THE TEMPERATURE DEPENDENCE OF PHOTOVOLTAIC MODULE ELECTRICAL PERFORMANCE: A REVIEW OF EFFICIENCY/ POWER CORRELATIONS
- Detailed Balance Limit of Efficiency of p‐n Junction Solar Cells
- Performance analysis on a building-integrated solar heating and cooling panel
- Passive radiative cooling below ambient air temperature under direct sunlight
- Cooling performance of nocturnal radiative cooling combined with microencapsulated phase change material (MPCM) slurry storage
- Energy and exergy analysis of photovoltaic-thermal collector with and without glass cover
- Radiative cooling of buildings with flat-plate solar collectors
- Performance, materials and coating technologies of thermochromic thin films on smart windows
- Radiative cooling of solar absorbers using a visibly transparent photonic crystal thermal blackbody
- Radiative cooling of solar cells
- Thermophotovoltaics: Fundamentals, challenges and prospects
- Improving photovoltaic performance through radiative cooling in both terrestrial and extraterrestrial environments.
- Is enhanced radiative cooling of solar cell modules worth pursuing
Cited by
- Quantifying techno-economic indicators' impact on isolated renewable energy systems
- Radiant air-conditioning with infrared transparent polyethylene aerogel
- Experimental study on a low energy radiant-capacitive heating and cooling system
- Structural rod-like particles for highly efficient radiative cooling
- A review of piezoelectric energy harvesting tiles: Available designs and future perspective
- Investigating the variation in the optical properties of TiO2 thin-film utilized in bifacial solar cells using machine learning algorithm
- Assessment of photovoltaic power generation using fin augmented passive cooling technique for different climates
- Study of a double-acting solar collector for use in the absorption cooling system in hot regions
- Solar energy harvesting pavements on the road: comparative study and performance assessment
- Experimental and Numerical Study on the Insulation Performance of a Photo-Thermal Roof in Hot Summer and Cold Winter Areas
- Radiative cooling for buildings: A review of techno-enviro-economics and life-cycle assessment methods
- Optical properties of lithium titanate as a potential layer in light harvesters
- Tunable Photovoltaics: Adapting Solar Cell Technologies to Versatile Applications
- Thermodynamic analysis and multi-objective optimization of a modified solar trigeneration system for cooling, heating and power using photovoltaic-thermal and flat plate collectors
- Nonreciprocal Thermal Photonics for Energy Conversion and Radiative Heat Transfer
- A novel design of passive cooler for PV with PCM and two-phase closed thermosyphons
- Geopolymer‐based sub‐ambient daytime radiative cooling coating
- Radiative cooling for energy sustainability: Materials, systems, and applications
- DeepAdjoint: An All-in-One Photonic Inverse Design Framework Integrating Data-Driven Machine Learning with Optimization Algorithms
- A simple, accurate, and universal method for characterizing and comparing radiative cooling materials and devices
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