4.8 Article

Enhanced Thermal Buffering of Phase Change Materials by the Intramicrocapsule Sub per Mille CNT Dopant

期刊

ACS APPLIED MATERIALS & INTERFACES
卷 12, 期 14, 页码 16227-16235

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acsami.9b21205

关键词

phase change materials (PCM); thermal buffering; CNT; energy storage; microencapsulation; transient plane source method

资金

  1. National Research Foundation, Prime Minister Office, Singapore under its Campus of Research Excellence and Technological Enter-prise (CREATE) programme
  2. Israel Science Foundation [1215/19]
  3. Russian Foundation for Basic Research [18-29-19119]
  4. Presidium of the Russian Academy of Sciences [22]

向作者/读者索取更多资源

Microencapsulation of a carbon nanotube (CNT)-loaded paraffin phase change material, PCM in a poly(melamine-formaldehyde) shell, and the respective CNT-PCM gypsum composites is explored. Although a very low level (0.001-0.1 wt %) of intramicrocapsule loading of CNT dopant does not change the thermal conductivity of the solid, it increases the measured effusivity and thermal buffering performance during phase transition. The observed effusivity of 0.05 wt % CNT-doped PCM reaches 4000 W s(-0.5) m(-2) K-1, which is higher than the reported effusivity of alumina and alumina bricks and an order of magnitude larger than the solid, CNT-free PCM powder. The CNT dopant (0.015 wt %) in a 30 wt % PCM-plaster composite improved the effusivity by 60% compared to the CNT-free composite, whereas the addition of the same amount of CNTs to the bulk of the plaster does not improve either the effusivity or the thermal buffering performance of the composite. The thermal enhancement is ascribed to a CNT network formation within the paraffin core.

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