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Valorization of nopal wastes to produce quantum dots: optimizing synthesis and exploring in smart textile applications

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Fecha
2024
Autor
Mosqueda-Prado J.B
Pinillos-Bernal E
Ospina-Montoya V
Vásquez-Rendón M
Forgionny A
Acelas N.

Citación

       
TY - GEN T1 - Valorization of nopal wastes to produce quantum dots: optimizing synthesis and exploring in smart textile applications Y1 - 2024 UR - http://hdl.handle.net/11407/8900 PB - Frontiers Media SA AB - Quantum carbon dots (QCDs) were efficiently synthesized from post-extraction residues generated during nopal fabric production using a hydrothermal treatment. These QCDs were applied to nopal fabrics, enhancing their UV solar radiation absorption. The synthesized QCDs exhibited fluorescence emissions in the 200–300 nm range. An eco-friendly dispersion was created by incorporating QCDs into TiO2 for use in smart textiles, which underlines our commitment to maintaining a sustainable process. Bright and fluorescent patterns were successfully applied to commercial and nopal fabrics using a spray printing technique. Additionally, the QCDs demonstrated pH-sensitive color changes, paving the way for practical applications. This work represents an initial step towards a circular economy by utilizing residues from nopal fabric production to synthesize quantum dots, which may be employed in smart textiles applications with UV absorption capabilities. Copyright © 2024 Mosqueda-Prado, Pinillos-Bernal, Ospina-Montoya, Vásquez-Rendón, Forgionny and Acelas. ER - @misc{11407_8900, author = {}, title = {Valorization of nopal wastes to produce quantum dots: optimizing synthesis and exploring in smart textile applications}, year = {2024}, abstract = {Quantum carbon dots (QCDs) were efficiently synthesized from post-extraction residues generated during nopal fabric production using a hydrothermal treatment. These QCDs were applied to nopal fabrics, enhancing their UV solar radiation absorption. The synthesized QCDs exhibited fluorescence emissions in the 200–300 nm range. An eco-friendly dispersion was created by incorporating QCDs into TiO2 for use in smart textiles, which underlines our commitment to maintaining a sustainable process. Bright and fluorescent patterns were successfully applied to commercial and nopal fabrics using a spray printing technique. Additionally, the QCDs demonstrated pH-sensitive color changes, paving the way for practical applications. This work represents an initial step towards a circular economy by utilizing residues from nopal fabric production to synthesize quantum dots, which may be employed in smart textiles applications with UV absorption capabilities. Copyright © 2024 Mosqueda-Prado, Pinillos-Bernal, Ospina-Montoya, Vásquez-Rendón, Forgionny and Acelas.}, url = {http://hdl.handle.net/11407/8900} }RT Generic T1 Valorization of nopal wastes to produce quantum dots: optimizing synthesis and exploring in smart textile applications YR 2024 LK http://hdl.handle.net/11407/8900 PB Frontiers Media SA AB Quantum carbon dots (QCDs) were efficiently synthesized from post-extraction residues generated during nopal fabric production using a hydrothermal treatment. These QCDs were applied to nopal fabrics, enhancing their UV solar radiation absorption. The synthesized QCDs exhibited fluorescence emissions in the 200–300 nm range. An eco-friendly dispersion was created by incorporating QCDs into TiO2 for use in smart textiles, which underlines our commitment to maintaining a sustainable process. Bright and fluorescent patterns were successfully applied to commercial and nopal fabrics using a spray printing technique. Additionally, the QCDs demonstrated pH-sensitive color changes, paving the way for practical applications. This work represents an initial step towards a circular economy by utilizing residues from nopal fabric production to synthesize quantum dots, which may be employed in smart textiles applications with UV absorption capabilities. Copyright © 2024 Mosqueda-Prado, Pinillos-Bernal, Ospina-Montoya, Vásquez-Rendón, Forgionny and Acelas. OL Spanish (121)
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Resumen
Quantum carbon dots (QCDs) were efficiently synthesized from post-extraction residues generated during nopal fabric production using a hydrothermal treatment. These QCDs were applied to nopal fabrics, enhancing their UV solar radiation absorption. The synthesized QCDs exhibited fluorescence emissions in the 200–300 nm range. An eco-friendly dispersion was created by incorporating QCDs into TiO2 for use in smart textiles, which underlines our commitment to maintaining a sustainable process. Bright and fluorescent patterns were successfully applied to commercial and nopal fabrics using a spray printing technique. Additionally, the QCDs demonstrated pH-sensitive color changes, paving the way for practical applications. This work represents an initial step towards a circular economy by utilizing residues from nopal fabric production to synthesize quantum dots, which may be employed in smart textiles applications with UV absorption capabilities. Copyright © 2024 Mosqueda-Prado, Pinillos-Bernal, Ospina-Montoya, Vásquez-Rendón, Forgionny and Acelas.
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http://hdl.handle.net/11407/8900
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  • Indexados Scopus [2005]

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