Directed charge boosting by polyelectrolyte nanorods on a graphene oxide membrane for High-Performance blue energy harvesting

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초록

Blue energy harvesting is conversion of the Gibbs free energy of mixing due to the salinity gradient between fresh and salt water into electrical energy. Two-dimensional (2D) material-based nanofluidic channels offer unique features and distinct advantages for blue energy harvesting, and they can be prepared via simple fabrication and modification methods. However, because of their lower ion transport selectivity and conductivity than theoretical estimation due to intrinsic and structural defects, 2D nanochannels exhibit low power density and extractable power. In this study, we developed a scalable blade-coating method for the shear-induced alignment of polyelectrolyte nanorods in 2D nanochannels. Based on the increase in the directional charge density via structural modifications, devices had the developed nanochannel structure and achieved a high osmotic power density and energy conversion efficiency of 13.12 W m−2 and 35.64%, respectively. Finally, a hybrid nanofluidic tandem cell was used to operate a handheld electrical device. This study demonstrates the potential of coupling of improved charge density and modified ion pathway in the nanochannel by introducing a charge booster for osmotic energy conversion.

키워드

Charge density boostingGraphene oxideNanochannelOsmotic power generationPolyelectrolyteSUSTAINABLE POWER-GENERATIONREVERSE ELECTRODIALYSISCONCENTRATION-GRADIENTSALINITY GRADIENTION-TRANSPORTNANOCHANNELSDISPERSIONSEPARATIONCHANNELS
제목
Directed charge boosting by polyelectrolyte nanorods on a graphene oxide membrane for High-Performance blue energy harvesting
저자
Lee, Ki Hyun이현후정우재Han, Tae Hee
DOI
10.1016/j.cej.2023.144082
발행일
2023-08
유형
Article
저널명
Chemical Engineering Journal
470
페이지
1 ~ 9