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NaBr-Impregnated Graphene Aerogel for Ammonia-Based Adsorption Heat Pump Application

Authors
Joshi, Dhavalkumar N.Kim, Duckjong
Issue Date
Jun-2023
Publisher
AMER CHEMICAL SOC
Citation
ACS Materials Letters, v.5, no.7, pp 1886 - 1891
Pages
6
Indexed
SCIE
SCOPUS
Journal Title
ACS Materials Letters
Volume
5
Number
7
Start Page
1886
End Page
1891
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/67728
DOI
10.1021/acsmaterialslett.3c00374
ISSN
2639-4979
2639-4979
Abstract
Ammonia-based adsorption heat pumps (AAHPs) are receivingsignificantattention due to effective low-grade thermal energy usability, cost-effectiveness,and eco-friendliness. For AAHPs to be widely utilized, it is essentialto develop adsorbent materials that meet all of the characteristicsrequired by AAHPs, which has been very challenging. Although metalhalides (MHs) have excellent ammonia adsorption performance, theirpractical application to AAHPs has been limited due to their conformationalinstability during the ammonia adsorption-desorption process.Here, the MH-impregnated graphene aerogel (GA-NaBr) is studied fromthe perspective of AAHPs. Due to the pore structure formed by strongand flexible graphene networks and the high NH3 affinityof the scaffolded NaBr, the composite addressed the MHs' issues,showing much-improved adsorption rate and stability compared to pureNaBr, while maintaining equivalent adsorption capacity. With its structuralstability and impressive adsorption performance, GA-NaBr could bea breakthrough adsorption structure in the field of AAHPs.
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