Wang, Nan; Zhang, Ruiyong; Liu, Kunpeng; Zhang, Yuxin; Shi, Xin; Sand, Wolfgang; Hou, Baorong:
Application of nanomaterials in antifouling: A review
In: Nano materials science$dNMS (2024), in press
2024Review in journal
ChemistryFaculty of Chemistry » Environmental Microbiology and Biotechnology
Related: 1 publication(s)
Title in English:
Application of nanomaterials in antifouling: A review
Author:
Wang, Nan
;
Zhang, RuiyongUDE
LSF ID
52887
Other
connected with university
corresponding author
;
Liu, Kunpeng
;
Zhang, Yuxin
;
Shi, Xin
;
Sand, WolfgangUDE
LSF ID
11422
ORCID
0000-0002-6724-0960ORCID iD
Other
connected with university
;
Hou, Baorong
Other
corresponding author
Year of publication:
2024
Scopus ID
Note:
in press
Language of text:
English
Keyword, Topic:
Antibacterial ; Anticorrosion ; Antifouling ; Coating ; Membranes ; Nanomaterials
Type of resource:
Text

Abstract in English:

With the continuous development of the marine economy and the upgrading of marine infrastructure, the increasing marine engineering equipment is facing a serious problem of marine fouling. However, developing marine antifouling materials and antifouling technologies is extremely difficult due to the complexity of the marine environment and the biodiversity of the fouling. Therefore, it is the key breakthrough to develop advanced materials for solving marine fouling problems. Nanomaterials with small dimensions and controlled micro-structure have outstanding antifouling efficiency and great promise for various antifouling fields. Herein, the development of antifouling nanomaterials and technologies in recent years are reviewed for aspects of types of antifouling nanomaterials, technologies of antifouling, and potential application of antifouling. The antifouling nanomaterials are categorized as non-metal-based nanomaterials, metal-based nanomaterials, polymeric nanomaterials, composite nanomaterials, and others. Additionally, the potential applications of antifouling nanomaterials, including marine antifouling, water treatment, and medical antifouling are discussed. Finally, we proposed the perspectives of research and development trends of the antifouling nanomaterials. This overview may promote the development of new efficient antifouling nanomaterials and develop their potential commercial applications.