Literature DB >> 26389519

High-Performance Capacitive Deionization Disinfection of Water with Graphene Oxide-graft-Quaternized Chitosan Nanohybrid Electrode Coating.

Yilei Wang1,2, Ahmed G El-Deen1,2, Peng Li1,2,3, Bernice H L Oh1,2, Zanru Guo1,2, Mya Mya Khin1,2, Yogesh S Vikhe1, Jing Wang1, Rebecca G Hu4, Remko M Boom5, Kimberly A Kline6,7, David L Becker4, Hongwei Duan1, Mary B Chan-Park1,2.   

Abstract

Water disinfection materials should ideally be broad-spectrum-active, nonleachable, and noncontaminating to the liquid needing sterilization. Herein, we demonstrate a high-performance capacitive deionization disinfection (CDID) electrode made by coating an activated carbon (AC) electrode with cationic nanohybrids of graphene oxide-graft-quaternized chitosan (GO-QC). Our GO-QC/AC CDID electrode can achieve at least 99.9999% killing (i.e., 6 log reduction) of Escherichia coli in water flowing continuously through the CDID cell. Without the GO-QC coating, the AC electrode alone cannot kill the bacteria and adsorbs a much smaller fraction (<82.8 ± 1.8%) of E. coli from the same biocontaminated water. Our CDID process consists of alternating cycles of water disinfection followed by electrode regeneration, each a few minutes duration, so that this water disinfection process can be continuous and it only needs a small electrode voltage (2 V). With a typical brackish water biocontamination (with 10(4) CFU mL(-1) bacteria), the GO-QC/AC electrodes can kill 99.99% of the E. coli in water for 5 h. The disinfecting GO-QC is securely attached on the AC electrode surface, so that it is noncontaminating to water, unlike many other chemicals used today. The GO-QC nanohybrids have excellent intrinsic antimicrobial properties in suspension form. Further, the GO component contributes toward the needed surface conductivity of the CDID electrode. This CDID process offers an economical method toward ultrafast, contaminant-free, and continuous killing of bacteria in biocontaminated water. The proposed strategy introduces a green in situ disinfectant approach for water purification.

Entities:  

Keywords:  antimicrobial; capacitive deionization; cationic; contact-active; graphene oxide; quaternary chitosan; water disinfection

Mesh:

Substances:

Year:  2015        PMID: 26389519     DOI: 10.1021/acsnano.5b03763

Source DB:  PubMed          Journal:  ACS Nano        ISSN: 1936-0851            Impact factor:   15.881


  6 in total

Review 1.  Hyaluronic Acid-Based Nanomaterials as a New Approach to the Treatment and Prevention of Bacterial Infections.

Authors:  Reza Alipoor; Mohammad Ayan; Michael R Hamblin; Reza Ranjbar; Somaye Rashki
Journal:  Front Bioeng Biotechnol       Date:  2022-06-08

Review 2.  Recent Development of Polydopamine Anti-Bacterial Nanomaterials.

Authors:  Zhengwei Xu; Tingting Wang; Junqiu Liu
Journal:  Int J Mol Sci       Date:  2022-06-30       Impact factor: 6.208

3.  Enhanced tissue regeneration through immunomodulation of angiogenesis and osteogenesis with a multifaceted nanohybrid modified bioactive scaffold.

Authors:  Hang Xue; Zhenhe Zhang; Ze Lin; Jin Su; Adriana C Panayi; Yuan Xiong; Liangcong Hu; Yiqiang Hu; Lang Chen; Chenchen Yan; Xudong Xie; Yusheng Shi; Wu Zhou; Bobin Mi; Guohui Liu
Journal:  Bioact Mater       Date:  2022-06-02

4.  Chitosan functionalized nanocochleates for enhanced oral absorption of cyclosporine A.

Authors:  Min Liu; Xiaoming Zhong; Zhiwen Yang
Journal:  Sci Rep       Date:  2017-01-23       Impact factor: 4.379

Review 5.  Antiviral Nanomaterials for Designing Mixed Matrix Membranes.

Authors:  Abayomi Babatunde Alayande; Yesol Kang; Jaewon Jang; Hobin Jee; Yong-Gu Lee; In S Kim; Euntae Yang
Journal:  Membranes (Basel)       Date:  2021-06-22

6.  Graphene Oxide/Copper Nanoderivatives-Modified Chitosan/Hyaluronic Acid Dressings for Facilitating Wound Healing in Infected Full-Thickness Skin Defects.

Authors:  Ying Yang; Zhonggen Dong; Min Li; Lihong Liu; Hang Luo; Pu Wang; Dou Zhang; Xinghua Yang; Kechao Zhou; Shaorong Lei
Journal:  Int J Nanomedicine       Date:  2020-10-27
  6 in total

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