2022
DOI: 10.1016/j.isci.2022.104226
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Flexible engineering of advanced phase change materials

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Cited by 32 publications
(11 citation statements)
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“…In this regard, versatile preparation strategies have been proposed to develop flexible composite PCMs. Typical fabrication method of flexible composite PCMs is infiltrating PCMs into flexible supporting materials, such as carbon sponges, carbon aerogels, polymeric elastomers, and flexible fibers. ,,, Ma et al prepared MWCNT-decorated cross-linkable polysiloxane to encapsulate paraffin for tailored solar-thermal energy conversion by a self-assembly method (Figure A, B). The solar-thermal conversion efficiency of composite PCMs was approximately 65% under 100 mW/cm 2 .…”
Section: Advanced Pcms For Interdisciplinary Applicationsmentioning
confidence: 99%
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“…In this regard, versatile preparation strategies have been proposed to develop flexible composite PCMs. Typical fabrication method of flexible composite PCMs is infiltrating PCMs into flexible supporting materials, such as carbon sponges, carbon aerogels, polymeric elastomers, and flexible fibers. ,,, Ma et al prepared MWCNT-decorated cross-linkable polysiloxane to encapsulate paraffin for tailored solar-thermal energy conversion by a self-assembly method (Figure A, B). The solar-thermal conversion efficiency of composite PCMs was approximately 65% under 100 mW/cm 2 .…”
Section: Advanced Pcms For Interdisciplinary Applicationsmentioning
confidence: 99%
“…In addition to the above-mentioned common encapsulation strategies, the encapsulation of PCMs can also adopt a grafting strategy, sintering strategy, spinning strategy, and 3D printing strategy. The grafting strategy is the formation of copolymers by linking high melting point polymers with low melting point polymers through chemical bonds . When low melting point polymers change from the crystalline state to the amorphous state, the skeleton of high melting point polymers is not dissolved, which limits the flow of low melting point polymers.…”
Section: Overview Of Pcmsmentioning
confidence: 99%
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“…[4][5][6][7][8][9][10] Silica nanoparticles are also considered important nanomaterials having signicant applications, which have increased drastically during the last years, have attracted extensive attention, and are widely used due to their greater advantages over conventional nanoparticles; their projected market reached about $8.8 billion in 2020. [9][10][11][12] Many techniques are used to prepare silica nanoparticles (SiO 2 NPs), such as plasma manufacturing, chemical vapor deposition, microemulsion synthesis, combustion processing, sol-gel synthesis, and hydrothermal processes, 13 where such fabricated silica nanoparticles are classied into mesoporous and nanoporous nanoparticles. The sol-gel method is considered one of the most important and widely applied techniques utilized to prepare nanoparticles.…”
Section: Introductionmentioning
confidence: 99%
“…With the rapid development of the economy, the dual pressures brought by energy depletion and environmental pollution have forced mankind to continuously explore new renewable and clean energy sources [ 1 , 2 , 3 , 4 ]. At the same time, the imbalance of energy supply and demand in space and time and low utilization efficiency further aggravate the waste of resources and environmental problems during energy development and utilization [ 5 , 6 , 7 , 8 ]. Therefore, researchers also turn their attention to developing energy utilization technologies while exploring new energy sources to improve the effective utilization of existing energy sources.…”
Section: Introductionmentioning
confidence: 99%