Green Synthesis of Silver Nanoparticles from Solidago microglossa in Cellulose Acetate Nanofibers for Antibacterial Air Filtration

Abstract Silver nanoparticles (AgNPs) have emerged as promising materials for biocidal applications; however, conventional synthesis routes often rely on hazardous chemicals, requiring post-synthesis purification and raising environmental and health concerns. Here, AgNPs were rapidly produced (<20 min) by green synthesis using Arnica-brasileira (Solidago microglossa) extract and incorporated into electrospun cellulose acetate (CA) nanofibers. The resulting AgNPs were spherical and colloidally stable (ζ = −28.6 mV; 31 nm), as confirmed by EDS, XRD, and XRF. SEM and TEM showed that AgNP incorporation altered nanofiber morphology, reducing the average fiber diameter from 420 nm (neat CA) to <260 nm, while FTIR, DSC, and TGA indicated changes in the structural and thermal behavior of the CA matrix. The air-filtration performance was evaluated under nanoparticle aerosol conditions and benchmarked against two commercial reference filter media. AgNP-loaded mats achieved a >99.48% collection efficiency with pressure drops below 260 Pa. Overall, this work demonstrates a fast, low-cost, and sustainable route to AgNP-functionalized CA nanofibers with high-efficiency nanoparticle filtration and added antimicrobial potential.

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Publication Details

Journal
ACS Applied Engineering Materials
Published
2026-09-28
DOI
https://doi.org/10.1021/acsaenm.6c00834
Primary Topic
Electrospun Nanofibers in Biomedical Applications
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article
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article

Green Synthesis of Silver Nanoparticles from Solidago microglossa in Cellulose Acetate Nanofibers for Antibacterial Air Filtration

Mônica Lopes Aguiar, Gustavo Cardoso da Mata, Edilton Nunes da Silva, Vádila Giovana Guerra et al.
ACS Applied Engineering Materials
Electrospun Nanofibers in Biomedical Applications
article

Green Synthesis of Silver Nanoparticles from Solidago microglossa in Cellulose Acetate Nanofibers for Antibacterial Air Filtration

Mônica Lopes Aguiar, Gustavo Cardoso da Mata, Edilton Nunes da Silva, Vádila Giovana Guerra, Paulo Augusto Marques Chagas, Felipe de Aquino Lima, WANDERLEY PEREIRA DE OLIVEIRA, Clóvis Wesley Oliveira de Souza, Deisy Teles de Araújo
article en

Abstract

Abstract Silver nanoparticles (AgNPs) have emerged as promising materials for biocidal applications; however, conventional synthesis routes often rely on hazardous chemicals, requiring post-synthesis purification and raising environmental and health concerns. Here, AgNPs were rapidly produced (<20 min) by green synthesis using Arnica-brasileira (Solidago microglossa) extract and incorporated into electrospun cellulose acetate (CA) nanofibers. The resulting AgNPs were spherical and colloidally stable (ζ = −28.6 mV; 31 nm), as confirmed by EDS, XRD, and XRF. SEM and TEM showed that AgNP incorporation altered nanofiber morphology, reducing the average fiber diameter from 420 nm (neat CA) to <260 nm, while FTIR, DSC, and TGA indicated changes in the structural and thermal behavior of the CA matrix. The air-filtration performance was evaluated under nanoparticle aerosol conditions and benchmarked against two commercial reference filter media. AgNP-loaded mats achieved a >99.48% collection efficiency with pressure drops below 260 Pa. Overall, this work demonstrates a fast, low-cost, and sustainable route to AgNP-functionalized CA nanofibers with high-efficiency nanoparticle filtration and added antimicrobial potential.

ACS Applied Engineering Materials
University of Alberta (CA), Universidade Federal de São Carlos (BR), Universidade de São Paulo (BR), Universidade Federal do Espírito Santo (BR)
Responsible consumption and production
Openalex Percentile: Top 23%
Electrospun Nanofibers in Biomedical Applications
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