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Sunlight-activated phase change materials for controlled heat storage and triggered release
Journal article   Peer reviewed

Sunlight-activated phase change materials for controlled heat storage and triggered release

Yuran Shi, Mihael A Gerkman, Qianfeng Qiu, Shuren Zhang and Grace G D Han
Journal of materials chemistry. A, Materials for energy and sustainability, Vol.9(15), pp.9798-9808
01/01/2021
Handle:
https://hdl.handle.net/10192/67926

Abstract

Latent heat Organic materials Liquid phases Isomerization Crystallization Switches Azo compounds Irradiance Energy harvesting Phase transitions Light sources Phase change materials Luminous intensity Heat Wavelengths Energy Heat storage Sunlight Solar radiation Irradiation Photovoltaics Solar Energy
We report the design of photo-responsive organic phase change materials that can absorb filtered solar radiation to store both latent heat and photon energy via simultaneous phase transition and photo-isomerization. The activation of photo-switches by long wavelengths ≥530 nm in the visible light range at a low irradiance is achieved, in the absence of high-intensity light sources, by the ortho-substitution of azobenzene units. The facile transition from crystalline to liquid phase is enabled by appending an aliphatic group on the photochromic moiety. The sunlight-activated liquid phase exhibits an exceptionally long heat storage without crystallization for nearly two months, and the release of energy is triggered by a short irradiation at 430 nm. The successful demonstration of photo-controlled latent heat storage accomplished by solar irradiation opens a new horizon on solar energy harvesting by functional organic materials, as a complementary system to photocatalysts and photovoltaic materials.

UN Sustainable Development Goals (SDGs)

This output has contributed to the advancement of the following goals:

#7 Affordable and Clean Energy

Source: SDGs in the Output

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