Progress and Prospects of Chemical Functionalization of Textiles Via Nanotechnology
Over the past decade, nanotechnology has gained considerable attention among academia and industry professionals, playing a pivotal role in advancing this sector. Chemical functionalization of textiles using nanotechnology has ushered in an era of advanced materials with superior properties and func...
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Published in | ACS applied engineering materials Vol. 3; no. 1; pp. 1 - 20 |
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Main Authors | , , , , |
Format | Journal Article |
Language | English |
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American Chemical Society
24.01.2025
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Abstract | Over the past decade, nanotechnology has gained considerable attention among academia and industry professionals, playing a pivotal role in advancing this sector. Chemical functionalization of textiles using nanotechnology has ushered in an era of advanced materials with superior properties and functionalities. This Review delves into the current progress and future prospects in this rapidly evolving field, focusing on key advancements such as antimicrobial properties, UV protection, self-cleaning capabilities, enhanced mechanical strength, and smart textiles. This Review provides a comprehensive overview of the past 15 years of advancements in functional textiles using nanotechnology. Several types of nanomaterials based on their dimensions and functionalities have been discussed and summarized. Fabrication techniques such as electrospinning, coating technologies, and printing methods have enabled the integration of nanomaterials into textiles, offering benefits like improved strength, durability, and functionality. While nanotechnology has brought about significant positive environmental impacts by enhancing textile properties and functionality, there are also concerns regarding potential adverse environmental impacts due to nanomaterial leaching. The Review highlights the collaborative efforts of academia and industry professionals in developing mitigation strategies and the exploration of biodegradable nanomaterials, which are being used to address these challenges, reassuring the audience of the industry. |
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AbstractList | Over the past decade, nanotechnology has gained considerable attention among academia and industry professionals, playing a pivotal role in advancing this sector. Chemical functionalization of textiles using nanotechnology has ushered in an era of advanced materials with superior properties and functionalities. This Review delves into the current progress and future prospects in this rapidly evolving field, focusing on key advancements such as antimicrobial properties, UV protection, self-cleaning capabilities, enhanced mechanical strength, and smart textiles. This Review provides a comprehensive overview of the past 15 years of advancements in functional textiles using nanotechnology. Several types of nanomaterials based on their dimensions and functionalities have been discussed and summarized. Fabrication techniques such as electrospinning, coating technologies, and printing methods have enabled the integration of nanomaterials into textiles, offering benefits like improved strength, durability, and functionality. While nanotechnology has brought about significant positive environmental impacts by enhancing textile properties and functionality, there are also concerns regarding potential adverse environmental impacts due to nanomaterial leaching. The Review highlights the collaborative efforts of academia and industry professionals in developing mitigation strategies and the exploration of biodegradable nanomaterials, which are being used to address these challenges, reassuring the audience of the industry. |
Author | Hossain, Md. Tanvir Reza, Selim Islam, Md. Ariful Mohebbullah, Md Islam, Tarikul |
AuthorAffiliation | Michigan Technological University Department of Materials Science and Engineering Department of Textile Engineering Department of Textile, Merchandising, and Interiors University of Georgia Jashore University of Science and Technology |
AuthorAffiliation_xml | – name: Department of Textile, Merchandising, and Interiors – name: University of Georgia – name: Michigan Technological University – name: Department of Textile Engineering – name: Jashore University of Science and Technology – name: Department of Materials Science and Engineering |
Author_xml | – sequence: 1 givenname: Md. Tanvir orcidid: 0000-0001-8572-2560 surname: Hossain fullname: Hossain, Md. Tanvir email: tanvirhossain@bubt.edu.bd organization: Department of Textile Engineering – sequence: 2 givenname: Selim surname: Reza fullname: Reza, Selim organization: Department of Textile Engineering – sequence: 3 givenname: Md. Ariful orcidid: 0009-0001-1042-2659 surname: Islam fullname: Islam, Md. Ariful organization: Department of Textile Engineering – sequence: 4 givenname: Md surname: Mohebbullah fullname: Mohebbullah, Md organization: Department of Textile Engineering – sequence: 5 givenname: Tarikul orcidid: 0000-0002-3106-378X surname: Islam fullname: Islam, Tarikul email: mti@just.edu.bd organization: Jashore University of Science and Technology |
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