Literature DB >> 27589373

Flexible 3D Nanoporous Graphene for Desalination and Bio-decontamination of Brackish Water via Asymmetric Capacitive Deionization.

Ahmed G El-Deen1,2,3, Remko M Boom4, Hak Yong Kim5, Hongwei Duan1, Mary B Chan-Park1,2, Jae-Hwan Choi6.   

Abstract

Nanoporous graphene based materials are a promising nanostructured carbon for energy storage and electrosorption applications. We present a novel and facile strategy for fabrication of asymmetrically functionalized microporous activated graphene electrodes for high performance capacitive desalination and disinfection of brackish water. Briefly, thiocarbohydrazide coated silica nanoparticles intercalated graphene sheets are used as a sacrificial material for creating mesoporous graphene followed by alkaline activation process. This fabrication procedure meets the ideal desalination pore diameter with ultrahigh specific surface area ∼ 2680 m(2) g(-1) of activated 3D graphene based micropores. The obtained activated graphene electrode is modified by carboxymethyl cellulose as negative charge (COO(-2)) and disinfectant quaternary ammonium cellulose with positively charged polyatomic ions of the structure (NR4(+)). Our novel asymmetric coated microporous activated 3D graphene employs nontoxic water-soluble binder which increases the surface wettability and decreases the interfacial resistance and moreover improves the electrode flexibility compared with organic binders. The desalination performance of the fabricated electrodes was evaluated by carrying out single pass mode experiment under various cell potentials with symmetric and asymmetric cells. The asymmetric charge coated microporous activated graphene exhibits exceptional electrosorption capacity of 18.43 mg g(-1) at a flow rate of 20 mL min(-1) upon applied cell potential of 1.4 V with initial NaCl concentration of 300 mg L(-1), high charge efficiency, excellent recyclability, and, moreover, good antibacterial behavior. The present strategy provides a new avenue for producing ultrapure water via green capacitive deionization technology.

Entities:  

Keywords:  asymmetric capacitive deionization; nanohybrid electrode; nanoporous graphene; water desalination; water disinfection

Year:  2016        PMID: 27589373     DOI: 10.1021/acsami.6b08658

Source DB:  PubMed          Journal:  ACS Appl Mater Interfaces        ISSN: 1944-8244            Impact factor:   9.229


  5 in total

Review 1.  Knowledge and Technology Used in Capacitive Deionization of Water.

Authors:  Kamran Salari; Payam Zarafshan; Morteza Khashehchi; Gholamreza Chegini; Hamed Etezadi; Hamed Karami; Joanna Szulżyk-Cieplak; Grzegorz Łagód
Journal:  Membranes (Basel)       Date:  2022-04-24

2.  Facile synthesis of TiO2/ZrO2 nanofibers/nitrogen co-doped activated carbon to enhance the desalination and bacterial inactivation via capacitive deionization.

Authors:  Ahmed S Yasin; Ibrahim M A Mohamed; Hamouda M Mousa; Chan Hee Park; Cheol Sang Kim
Journal:  Sci Rep       Date:  2018-01-11       Impact factor: 4.379

Review 3.  Towards Electrochemical Water Desalination Techniques: A Review on Capacitive Deionization, Membrane Capacitive Deionization and Flow Capacitive Deionization.

Authors:  Gbenro Folaranmi; Mikhael Bechelany; Philippe Sistat; Marc Cretin; Francois Zaviska
Journal:  Membranes (Basel)       Date:  2020-05-12

4.  Three-dimensional honeycomb-like porous carbon derived from corncob for the removal of heavy metals from water by capacitive deionization.

Authors:  X F Zhang; B Wang; J Yu; X N Wu; Y H Zang; H C Gao; P C Su; S Q Hao
Journal:  RSC Adv       Date:  2018-01-04       Impact factor: 3.361

Review 5.  A review of modification of carbon electrode material in capacitive deionization.

Authors:  Yutuo Cheng; Zhiqi Hao; Changrun Hao; Yu Deng; Xingying Li; Kexun Li; Yubo Zhao
Journal:  RSC Adv       Date:  2019-08-07       Impact factor: 4.036

  5 in total

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