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Carbonized conjugated microporous polymers hollow spheres incorporated with fatty alcohols for ultra-highly efficient energy storage and conversion.

Authors :
Ma, Yingjiao
Lu, Nan
Hu, Zhentao
Zhang, Jia
Cao, Xiaoyin
Li, Jiyan
Zhu, Zhaoqi
Sun, Hanxue
Liang, Weidong
Li, An
Source :
Solar Energy Materials & Solar Cells. Jan2023, Vol. 250, pN.PAG-N.PAG. 1p.
Publication Year :
2023

Abstract

With the increasing global instability in the development of the world, the efficient storage and conversion of energy have alerted attention. In this work, a novel conjugated microporous polymer hollow spheres (CMPHS) with a high specific surface (323 m2 g−1) and unique cavity structure are creatively prepared. By treatment with simple carbonization, the resulting carbonized microspheres (CCMPHS) show a high light absorption (80%) and outstanding thermal stability (thermal decomposition at 506 °C). On basis of the abundant micropores distributed on the surface of microspheres, the organic phase change materials (PCMs) i.e., fatty alcohols (tetradecanol (TD), hexadecanol (HD), and octadecanol (OD)), are successfully embedded into CCMPHS to afford a kind of new composite (CCMPHS@PCMs) for energy storage and conversion. The three kinds of CCMPHS@PCMs exhibit high latent heats (220.1 kJ kg−1, 244.6 kJ kg−1, and 228.8 kJ kg−1, respectively.). In terms of energy conversion, the photothermal conversion efficiencies of CCMPHS@PCMs are up to 86.83%, 89.45%, and 85.40% and the electrothermal conversion efficiencies are 83.81%, 81.10%, and 90.50%, which possess one of the highest values among the most of similar composites embed with PCMs reported to dates. Based on the advantages of simple fabrication, easy to scale up, high energy density, and conversion efficiency, the CCMPHS@PCMs are expected to be one of the most promising candidates as efficient PCMs composite for a variety of practical applications such as solar or electric energy harvesting, storage, conversion, and so on. • Hollow porous polymers spheres prepared by template method. • The CMPHS and CCMPHS exhibits unique nano spherical morphology, abundant porosity. • The CCMPHS shows excellent solar light absorption about 80% at the range of visible light and superior thermal stability which make decomposition at 506 °C. • The CCMPHS@PCMs possesses huge energy density, and storage/conversion potential which possess 90% photothermal conversion and thermoelectric conversion efficiency. • The CCMPHS@PCMs has great advantages for their simple and scalable manufacture process. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
09270248
Volume :
250
Database :
Academic Search Index
Journal :
Solar Energy Materials & Solar Cells
Publication Type :
Academic Journal
Accession number :
160365863
Full Text :
https://doi.org/10.1016/j.solmat.2022.112076