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Hybrid photothermal structure based on Cr-MgF2 solar absorber/ PMMA-graphene heat reservoir for enhanced thermoelectric power generation

Authors
Kwak, G[Kwak, Geonho]Jeong, YS[Jeong, Yoo-Seok]Kim, SW[Kim, Sun-Woo]Kim, JK[Kim, Jin-Kyeom]Choi, J[Choi, Jihyeok]Song, KG[Song, Kyung Guen]Kim, HJ[Kim, Hee Jun]Choi, WJ[Choi, Won Jun]Yang, Y[Yang, Ya]Song, HC[Song, Hyun-Cheol]Baik, JM[Baik, Jeong Min]Yu, HK[Yu, Hak Ki]
Issue Date
1-Jun-2023
Publisher
ELSEVIER
Keywords
Photothermal properties; Light absorber; Heat reservoir; Thermoelectric generator; Low emissivity
Citation
NANO ENERGY, v.110
Indexed
SCIE
SCOPUS
Journal Title
NANO ENERGY
Volume
110
URI
https://scholarworks.bwise.kr/skku/handle/2021.sw.skku/102741
DOI
10.1016/j.nanoen.2023.108352
ISSN
2211-2855
Abstract
In this paper, a facile strategy for a hybrid photothermal structure that can efficiently manage solar heat is reported. The hybrid photothermal structure consists of a Cr/MgF2 multilayer structure absorber and a poly(methyl methacrylate) (PMMA)-graphene heat reservoir that prevents the absorbed heat from being lost through radiation or convection. It exhibits a quite high light absorption of approximately 80% over a wavelength range of 0.5-2.5 mu m. The thermal conductivity and thermal diffusivity are improved by about 47% according to the addition of graphene to PMMA, effectively transferring the stored heat to a place where it can be used efficiently. When the hybrid photothermal structure was applied to the hot zone of a thermoelectric generator, the output voltage is improved by 2.74 times compared to the device with only the light absorber. In addition, the difference between the high and low temperatures reached up to approximately 27 K.
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