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Erschienen in: Cellulose 14/2020

27.07.2020 | Original Research

Green approach for the fabrication of silver-oxidized cellulose nanocomposite with antibacterial properties

verfasst von: Daniela Caschera, Roberta Grazia Toro, Fulvio Federici, Roberta Montanari, Tilde de Caro, Mona T. Al-Shemy, Abeer M. Adel

Erschienen in: Cellulose | Ausgabe 14/2020

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Abstract

Herein we present facile and green two-steps method for the fabrication of silver-carboxylated nanocellulose (Ag-ONCs) nanocomposite. Respecting the Circular Economy principle, the ONCs are prepared starting from the treatment of agriculture bagasse waste with ammonium persulfate—APS. This method permits to obtain ONCs fibers with rod or whisker shapes, with size and length in the range 6–10 nm and 90–150 nm, respectively. Ag-ONCs are then fabricated using a green photochemical approach. The UV irradiation works as radical initiator for the silver reduction, in water solution and at room temperature. The ONCs act as a template and reducing agent for silver nanoparticles formation, due to the specific hydroxyl and carboxyl groups on the cellulose surface. The structural and morphological properties of ONCs and Ag-ONCs nanocomposite are well evaluated by FT-IR, XRD, UV–Vis, AFM, SEM and TEM characterizations. The results showed that well crystalline, quasi-spherical silver nanoparticles of about 4–10 nm dispersed in the ONCs matrix are fabricated. Qualitative antibacterial tests towards gram negative (Escherichia coli and Pseudomonas aeruginosa) and gram positive (Staphylococcus aureus and Bacillus subtilis) bacteria are carried out and the results demonstrated that the Ag-ONCs inhibit the bacteria growth, with 12–14 mm of inhibition zone for both the bacteria groups. Also, quantitative antibacterial tests for E. coli, chosen as representative for its diffusion, are carried out and the bacteria growth rate and the inhibition rate for Ag-ONCs at different concentrations are evaluated. The analysis showed that the MIC (minimum inhibition concentration) for Ag is about 110 µg/mL for E. coli. These results demonstrated that the Ag-ONCs possess suitable and promising antibacterial behavior and could be used for industrial and technological application.

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Literatur
Zurück zum Zitat Caschera D, Federici F, Focanti F, Curulli A, Zane D, Padeletti G (2009) Gold nanoparticles-modified GC electrodes: electrochemical behaviour dependence of different neurotransmitters and molecules of biological interest on the size and the shape of the particles. J Nanopart Res 11:1925–1936. https://doi.org/10.1007/s11051-008-9547-0CrossRef Caschera D, Federici F, Focanti F, Curulli A, Zane D, Padeletti G (2009) Gold nanoparticles-modified GC electrodes: electrochemical behaviour dependence of different neurotransmitters and molecules of biological interest on the size and the shape of the particles. J Nanopart Res 11:1925–1936. https://​doi.​org/​10.​1007/​s11051-008-9547-0CrossRef
Zurück zum Zitat Cheng M, Qin Z, Liu Y, Qin Y, Li T, Chen L, Zhua M (2014) Efficient extraction of carboxylated spherical cellulose nanocrystals with narrow distribution through hydrolysis of lyocell fibers by using ammonium persulfate as an oxidant. J Mater Chem A 2(1):251–258. https://doi.org/10.1039/C3TA13653ACrossRef Cheng M, Qin Z, Liu Y, Qin Y, Li T, Chen L, Zhua M (2014) Efficient extraction of carboxylated spherical cellulose nanocrystals with narrow distribution through hydrolysis of lyocell fibers by using ammonium persulfate as an oxidant. J Mater Chem A 2(1):251–258. https://​doi.​org/​10.​1039/​C3TA13653ACrossRef
Zurück zum Zitat Dufresne A (2017) Nanocellulose: from nature to high performance tailored materials. Walter de Gruyter GmbH & Co, BerlinCrossRef Dufresne A (2017) Nanocellulose: from nature to high performance tailored materials. Walter de Gruyter GmbH & Co, BerlinCrossRef
Zurück zum Zitat Huang J, Dufresne A, Lin N (2019) Nanocellulose: from fundamentals to advanced materials. Wiley, HobkenCrossRef Huang J, Dufresne A, Lin N (2019) Nanocellulose: from fundamentals to advanced materials. Wiley, HobkenCrossRef
Zurück zum Zitat Kitahama Y, Ikemachi T, Suzuki T, Miura T, Ozaki Y (2014) Plasmonic properties of triangle-shaped silver trimers selectively fabricated by near-field photo-reduction using an apertured cantilever for an atomic force microscope. Chem Commun 50:9693–9696. https://doi.org/10.1039/C4CC04230ACrossRef Kitahama Y, Ikemachi T, Suzuki T, Miura T, Ozaki Y (2014) Plasmonic properties of triangle-shaped silver trimers selectively fabricated by near-field photo-reduction using an apertured cantilever for an atomic force microscope. Chem Commun 50:9693–9696. https://​doi.​org/​10.​1039/​C4CC04230ACrossRef
Zurück zum Zitat Mohandas A, Raja SD, Jayakumar BR (2018) Chitosan based metallic nanocomposite scaffolds as antimicrobial wound dressings. Bioact Mater 3(3):267–277CrossRefPubMed Mohandas A, Raja SD, Jayakumar BR (2018) Chitosan based metallic nanocomposite scaffolds as antimicrobial wound dressings. Bioact Mater 3(3):267–277CrossRefPubMed
Zurück zum Zitat Sangeetha J, Thangadurai D, Hospet R, Purushotham P, Manowade KR, Mujeeb MA, Mundaragi AC, Jogaiah S, David M, Thimmappa SC, Prasad R, Harish ER (2017) Production of bionanomaterials from agricultural wastes. In: Prasad R, Kumar M, Kumar V (eds) Nanotechnology. Springer, Singapore, pp 33–58. https://doi.org/10.1007/978-981-10-4573-8_3CrossRef Sangeetha J, Thangadurai D, Hospet R, Purushotham P, Manowade KR, Mujeeb MA, Mundaragi AC, Jogaiah S, David M, Thimmappa SC, Prasad R, Harish ER (2017) Production of bionanomaterials from agricultural wastes. In: Prasad R, Kumar M, Kumar V (eds) Nanotechnology. Springer, Singapore, pp 33–58. https://​doi.​org/​10.​1007/​978-981-10-4573-8_​3CrossRef
Metadaten
Titel
Green approach for the fabrication of silver-oxidized cellulose nanocomposite with antibacterial properties
verfasst von
Daniela Caschera
Roberta Grazia Toro
Fulvio Federici
Roberta Montanari
Tilde de Caro
Mona T. Al-Shemy
Abeer M. Adel
Publikationsdatum
27.07.2020
Verlag
Springer Netherlands
Erschienen in
Cellulose / Ausgabe 14/2020
Print ISSN: 0969-0239
Elektronische ISSN: 1572-882X
DOI
https://doi.org/10.1007/s10570-020-03364-7

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