• Acta Optica Sinica
  • Vol. 41, Issue 15, 1523001 (2021)
Haipeng Zhao1、2, Xinyuan Zhang1、2, Yunbin He3, Shuliang Dou4, Yao Li4, Xiaofeng Li1、2, and Yaohui Zhan1、2、*
Author Affiliations
  • 1School of Optoelectronic Science and Engineering, Soochow University, Suzhou, Jiangsu 215006, China
  • 2Key Lab of Advanced Optical Manufacturing Technologies of Jiangsu Province & Key Lab of Modern Optical Technologies of Education Ministry of China, Suzhou, Jiangsu 215006, China;
  • 3School of Materials Science and Engineering, Hubei University, Wuhan, Hubei 430062, China
  • 4Institute of Composite Materials and Structures, Harbin Institute of Technology, Harbin, Heilongjiang 150001, China
  • show less
    DOI: 10.3788/AOS202141.1523001 Cite this Article Set citation alerts
    Haipeng Zhao, Xinyuan Zhang, Yunbin He, Shuliang Dou, Yao Li, Xiaofeng Li, Yaohui Zhan. Self-Adaptive Temperature Modulation Based on Thermal Induced Phase Changing of Vanadium Dioxide[J]. Acta Optica Sinica, 2021, 41(15): 1523001 Copy Citation Text show less
    References

    [1] Obrecht M, Denac M. A sustainable energy policy for Slovenia: considering the potential of renewables and investment costs[J]. Journal of Renewable and Sustainable Energy, 5, 032301(2013).

    [2] Raman A P, Anoma M A, Zhu L X et al. Passive radiative cooling below ambient air temperature under direct sunlight[J]. Nature, 515, 540-544(2014).

    [3] Ma H C, Yao K Q, Dou S L et al. Multilayered SiO2/Si3N4 photonic emitter to achieve high-performance all-day radiative cooling[J]. Solar Energy Materials and Solar Cells, 212, 110584(2020).

    [4] Chae D, Kim M, Jung P H et al. Spectrally selective inorganic-based multilayer emitter for daytime radiative cooling[J]. ACS Applied Materials & Interfaces, 12, 8073-8081(2020).

    [5] Yao K Q, Ma H C, Huang M et al. Near-perfect selective photonic crystal emitter with nanoscale layers for daytime radiative cooling[J]. ACS Applied Nano Materials, 2, 5512-5519(2019).

    [6] Hsu P C, Song A Y, Catrysse P B et al. Radiative human body cooling by nanoporous polyethylene textile[J]. Science, 353, 1019-1023(2016).

    [7] Xiang B, Zhang R, Luo Y L et al. 3D porous polymer film with designed pore architecture and auto-deposited SiO2 for highly efficient passive radiative cooling[J]. Nano Energy, 81, 105600(2021).

    [8] Mandal J, Fu Y K, Overvig A C et al. Hierarchically porous polymer coatings for highly efficient passive daytime radiative cooling[J]. Science, 362, 315-319(2018).

    [9] Mandal J, Yang Y, Yu N F et al. Paints as a scalable and effective radiative cooling technology for buildings[J]. Joule, 4, 1350-1356(2020).

    [10] Smith G, Gentle A, Arnold M et al. Nanophotonics-enabled smart windows, buildings and wearables[J]. Nanophotonics, 5, 55-73(2016).

    [11] Powell M J, Quesada-Cabrera R, Taylor A et al. Intelligent multifunctional VO2/SiO2/TiO2 coatings for self-cleaning, energy-saving window panels[J]. Chemistry of Materials, 28, 1369-1376(2016).

    [12] Sun K, Riedel C A, Urbani A et al. VO2 thermochromic metamaterial-based smart optical solar reflector[J]. ACS Photonics, 5, 2280-2286(2018).

    [13] Chandra S, Franklin D, Cozart J et al. Adaptive multispectral infrared camouflage[J]. ACS Photonics, 5, 4513-4519(2018).

    [14] Ke Y, Wang S, Liu G et al. Vanadium dioxide: the multistimuli responsive material and its applications[J]. Small, 14, e1802025(2018).

    [15] Manning T D, Parkin I P, Pemble M E et al. Intelligent window coatings: atmospheric pressure chemical vapor deposition of tungsten-doped vanadium dioxide[J]. Chemistry of Materials, 16, 744-749(2004).

    [16] Mlyuka N R, Niklasson G A, Granqvist C G. Mg doping of thermochromic VO2 films enhances the optical transmittance and decreases the metal-insulator transition temperature[J]. Applied Physics Letters, 95, 171909(2009).

    [17] Qin Y, Li Y, Fang B Y et al. Fabrication and optical properties of vanadium dioxide thin films doped by tungsten-vanadium co-sputtering[J]. Acta Optica Sinica, 33, 1231002(2013).

    [18] Wang H F, Li Y, Yu X J et al. Study on temperature dependence of infrared optical properties of vanadium dioxide thin film[J]. Acta Optica Sinica, 30, 1522-1526(2010).

    [19] Benkahoul M, Chaker M, Margot J et al. Thermochromic VO2 film deposited on Al with tunable thermal emissivity for space applications[J]. Solar Energy Materials and Solar Cells, 95, 3504-3508(2011).

    [20] Wang L P, Basu S, Zhang Z M. Direct and indirect methods for calculating thermal emission from layered structures with nonuniform temperatures[J]. Journal of Heat Transfer, 133, 072701(2011).

    [21] Wu S R, Lai K L, Wang C M. Passive temperature control based on a phase change metasurface[J]. Scientific Reports, 8, 7684(2018).

    [22] Celanovic I, Perreault D, Kassakian J. Resonant-cavity enhanced thermal emission[J]. Physical Review B, 72, 075127(2005).

    [23] Kats M A, Sharma D, Lin J et al. Ultra-thin perfect absorber employing a tunable phase change material[J]. Applied Physics Letters, 101, 221101(2012).

    [24] Taylor S, Yang Y, Wang L P. Vanadium dioxide based Fabry-Perot emitter for dynamic radiative cooling applications[J]. Journal of Quantitative Spectroscopy and Radiative Transfer, 197, 76-83(2017).

    [25] Beaini R, Baloukas B, Loquai S et al. Thermochromic VO2-based smart radiator devices with ultralow refractive index cavities for increased performance[J]. Solar Energy Materials and Solar Cells, 205, 110260(2020).

    [26] Sheppard C R. Approximate calculation of the reflection coefficient from a stratified medium[J]. Pure and Applied Optics: Journal of the European Optical Society Part A, 4, 665-669(1995).

    [27] Sakurai A, Tanikawa H, Yamada M. Computational design for a wide-angle cermet-based solar selective absorber for high temperature applications[J]. Journal of Quantitative Spectroscopy and Radiative Transfer, 132, 80-89(2014).

    [28] Zhang B, Chang S, Wang J et al. Feature points extraction of laser vision weld seam based on genetic algorithm[J]. Chinese Journal of Lasers, 46, 0102001(2019).

    [29] Yuan L C, Liu H, Liu J Q et al. Wind vector estimation of coherent doppler wind lidar based on genetic algorithm[J]. Chinese Journal of Lasers, 47, 0810004(2020).

    [30] Zeng Z S, Zhang F, Niu Z Y et al. Angular position distribution algorithm of micro mirror array based on genetic algorithm[J]. Chinese Journal of Lasers, 47, 0805003(2020).

    [31] An C, Chu J K, Zhang R. Optimization of bilayer sub-wavelength metallic grating based on genetic algorithm[J]. Laser & Optoelectronics Progress, 56, 220501(2019).

    [32] Marvin Q[2021-01-13]. Optical constants of minerals and other materials from the millimeter to the UV [2021-01-13].https://www.researchgate.net/publication/235197971_Optical_Constants_of_Minerals_and_Other_Materials_From_the_Millimeter_to_the_Ultraviolet..

    [33] Johnson P B, Christy R W. Optical constants of the noble metals[J]. Physical Review B, 6, 4370-4379(1972).

    [34] Kort-Kamp W J M, Kramadhati S, Azad A K et al. Passive radiative “thermostat” enabled by phase-change photonic nanostructures[J]. ACS Photonics, 5, 4554-4560(2018).

    Haipeng Zhao, Xinyuan Zhang, Yunbin He, Shuliang Dou, Yao Li, Xiaofeng Li, Yaohui Zhan. Self-Adaptive Temperature Modulation Based on Thermal Induced Phase Changing of Vanadium Dioxide[J]. Acta Optica Sinica, 2021, 41(15): 1523001
    Download Citation