Matches in SemOpenAlex for { <https://semopenalex.org/work/W2790064897> ?p ?o ?g. }
- W2790064897 endingPage "294" @default.
- W2790064897 startingPage "281" @default.
- W2790064897 abstract "Abstract In this study, a series of reversible thermochromic microencapsulated phase change materials (TC-MPCMs), exhibiting excellent latent heat storage-release performance, were designed and fabricated successfully. The characterization and microstructure regulation of TC-MPCMs were conducted systematically as well. The core of TC-MPCMs was comprised of crystal violet lactone employed as thermochromic colorant, bisphenol A employed as developer and 1-tetradecanol employed as co-solvent, respectively. These influencing factors of encapsulation process such as the amount of emulsifier, stirring rate, feeding weight of core/shell ratio, acid resistance and thermal cyclic durability were carried out to clarify the effect of various experimental conditions. The surface morphology, shell thickness and core–shell structure of TC-MPCMs were characterized via optical microscope (OM), thermal field emission scanning electronic microscope (TFE-SEM), transmission electron microscope (TEM), respectively. From different scanning calorimetry (DSC) analysis, the performance of temperature of fusion and crystallization and enthalpy of TC-MPCMs under various conditions were measured as well. The results of thermogravimetric (TG) analysis illustrated the influence on thermal stability of TC-MPCMs. In addition, Lab color space obtained by colorimeter is certainly intuitive to observe the colorimetric characteristics of TC-MPCMs as well. More importantly, the reversible thermochromic property associated with phase state of the 1-tetradecanol could also provide a visual evidence of energy storage or release performance of the TC-MPCMs. Furthermore, The TC-MPCMs exhibited excellent stability even after 100th thermal cycling test without any obvious performance degradation, including the morphology, phase change properties and thermal stability. In the end, the fire fighter protective clothing containing TC-MPCMs was designed and fabricated, which could provide adequate thermal protection in the various fire environments. Thus, TC-MPCMs developed in this work showed great potential applications in thermal protective clothing and other thermal regulation fields." @default.
- W2790064897 created "2018-03-29" @default.
- W2790064897 creator A5000432967 @default.
- W2790064897 creator A5028062402 @default.
- W2790064897 creator A5036349954 @default.
- W2790064897 creator A5043839950 @default.
- W2790064897 creator A5078772337 @default.
- W2790064897 creator A5079594267 @default.
- W2790064897 creator A5080723358 @default.
- W2790064897 date "2018-05-01" @default.
- W2790064897 modified "2023-10-18" @default.
- W2790064897 title "Reversible thermochromic microencapsulated phase change materials for thermal energy storage application in thermal protective clothing" @default.
- W2790064897 cites W1223304213 @default.
- W2790064897 cites W1227743207 @default.
- W2790064897 cites W1976465395 @default.
- W2790064897 cites W1989989452 @default.
- W2790064897 cites W1993609721 @default.
- W2790064897 cites W2001838368 @default.
- W2790064897 cites W2006033275 @default.
- W2790064897 cites W2007349166 @default.
- W2790064897 cites W2024147738 @default.
- W2790064897 cites W2027876738 @default.
- W2790064897 cites W2031812761 @default.
- W2790064897 cites W2034655190 @default.
- W2790064897 cites W2053448154 @default.
- W2790064897 cites W2056777003 @default.
- W2790064897 cites W2060593596 @default.
- W2790064897 cites W2064807936 @default.
- W2790064897 cites W2073763675 @default.
- W2790064897 cites W2076929080 @default.
- W2790064897 cites W2106626520 @default.
- W2790064897 cites W2164370003 @default.
- W2790064897 cites W2215706367 @default.
- W2790064897 cites W2222380124 @default.
- W2790064897 cites W2278433031 @default.
- W2790064897 cites W2311702788 @default.
- W2790064897 cites W2314654290 @default.
- W2790064897 cites W2464258597 @default.
- W2790064897 cites W2512254295 @default.
- W2790064897 cites W2542605595 @default.
- W2790064897 cites W2560404989 @default.
- W2790064897 cites W2566571261 @default.
- W2790064897 cites W2568533307 @default.
- W2790064897 cites W2590191496 @default.
- W2790064897 cites W2602696748 @default.
- W2790064897 cites W2605243710 @default.
- W2790064897 cites W2607087943 @default.
- W2790064897 cites W2623178974 @default.
- W2790064897 cites W2739000038 @default.
- W2790064897 cites W2753835874 @default.
- W2790064897 cites W813200676 @default.
- W2790064897 cites W995505119 @default.
- W2790064897 doi "https://doi.org/10.1016/j.apenergy.2018.02.150" @default.
- W2790064897 hasPublicationYear "2018" @default.
- W2790064897 type Work @default.
- W2790064897 sameAs 2790064897 @default.
- W2790064897 citedByCount "172" @default.
- W2790064897 countsByYear W27900648972018 @default.
- W2790064897 countsByYear W27900648972019 @default.
- W2790064897 countsByYear W27900648972020 @default.
- W2790064897 countsByYear W27900648972021 @default.
- W2790064897 countsByYear W27900648972022 @default.
- W2790064897 countsByYear W27900648972023 @default.
- W2790064897 crossrefType "journal-article" @default.
- W2790064897 hasAuthorship W2790064897A5000432967 @default.
- W2790064897 hasAuthorship W2790064897A5028062402 @default.
- W2790064897 hasAuthorship W2790064897A5036349954 @default.
- W2790064897 hasAuthorship W2790064897A5043839950 @default.
- W2790064897 hasAuthorship W2790064897A5078772337 @default.
- W2790064897 hasAuthorship W2790064897A5079594267 @default.
- W2790064897 hasAuthorship W2790064897A5080723358 @default.
- W2790064897 hasConcept C107861326 @default.
- W2790064897 hasConcept C121332964 @default.
- W2790064897 hasConcept C127413603 @default.
- W2790064897 hasConcept C133256868 @default.
- W2790064897 hasConcept C163258240 @default.
- W2790064897 hasConcept C166957645 @default.
- W2790064897 hasConcept C178790620 @default.
- W2790064897 hasConcept C183287310 @default.
- W2790064897 hasConcept C185592680 @default.
- W2790064897 hasConcept C192562407 @default.
- W2790064897 hasConcept C194365794 @default.
- W2790064897 hasConcept C204530211 @default.
- W2790064897 hasConcept C2778119658 @default.
- W2790064897 hasConcept C530175646 @default.
- W2790064897 hasConcept C61696701 @default.
- W2790064897 hasConcept C73916439 @default.
- W2790064897 hasConcept C95457728 @default.
- W2790064897 hasConcept C97355855 @default.
- W2790064897 hasConceptScore W2790064897C107861326 @default.
- W2790064897 hasConceptScore W2790064897C121332964 @default.
- W2790064897 hasConceptScore W2790064897C127413603 @default.
- W2790064897 hasConceptScore W2790064897C133256868 @default.
- W2790064897 hasConceptScore W2790064897C163258240 @default.
- W2790064897 hasConceptScore W2790064897C166957645 @default.
- W2790064897 hasConceptScore W2790064897C178790620 @default.
- W2790064897 hasConceptScore W2790064897C183287310 @default.
- W2790064897 hasConceptScore W2790064897C185592680 @default.