دوكتور تۇردىمۇھەممەد ئابدۇللاھ
تەقرىزلىك ژۇرنال ماقالىسىSCI-E / Scopus2022
30دەلىللەنگەن نەقىل

“Development of nanocoated filaments for 3D fused deposition modeling of antibacterial and antioxidant materials”

ئاپتورلار ۋە تەتقىقاتچىلار
Turdimuhammad Abdullah★Rayyan O QurbanMohamed Sh Abdel-WahabNuman A SalahAmmar AbdulGhani MelaibariMazin A ZamzamiAdnan Memić
Polymers (MDPI) Official Logo
Official Venue

Polymers 14 (13), 2645

Publisher: MDPI

تەتقىقات مەزمۇنى ۋە خۇلاسىسى (Abstract)

Three-dimensional (3D) printing is one of the most futuristic manufacturing technologies, allowing on-demand manufacturing of products with highly complex geometries and tunable material properties. Among the different 3D-printing technologies, fused deposition modeling (FDM) is the most popular one due to its affordability, adaptability, and pertinency in many areas, including the biomedical field. Yet, only limited amounts of materials are commercially available for FDM, which hampers their application potential. Polybutylene succinate (PBS) is one of the biocompatible and biodegradable thermoplastics that could be subjected to FDM printing for healthcare applications. However, microbial contamination and the formation of biofilms is a critical issue during direct usage of thermoplastics, including PBS. Herein, we developed a composite filament containing polybutylene succinate (PBS) and lignin for FDM printing. Compared to pure PBS, the PBS/lignin composite with 2.5~3.5% lignin showed better printability and antioxidant and antimicrobial properties. We further coated silver/zinc oxide on the printed graft to enhance their antimicrobial performance and obtain the strain-specific antimicrobial activity. We expect that the developed approach can be used in biomedical applications such as patient-specific orthoses.

يىللىق نەقىل ئېشىش سۈرئىتى

30 total citations
ئومۇمىي نەقىل:30
ئەڭ يۇقىرى يىل: 2023 (9 نەقىل)
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ئىلمىي نەقىل ئېلىش ۋە چۈشۈرۈش (Cite)

@article{abdullah2022developm,
  title = {Development of nanocoated filaments for 3D fused deposition modeling of antibacterial and antioxidant materials},
  author = {Turdimuhammad Abdullah, Rayyan O Qurban, Mohamed Sh Abdel-Wahab, Numan A Salah, Ammar AbdulGhani Melaibari, Mazin A Zamzami, Adnan Memić},
  journal = {Polymers 14 (13), 2645},
  volume = {14},
  number = {13},
  pages = {2645},
  year = {2022},
  publisher = {MDPI},
  doi = {10.3390/polym14132645},
  url = {https://doi.org/10.3390/polym14132645},
}

بىبلىئوگرافىك نەشر ئۇچۇرلىرى

ژۇرنال / پاتېنت نومۇرىPolymers 14 (13), 2645
نەشرىياتMDPI
توم (Volume)14
سان (Issue)13
بەتلەر (Pages)2645
ئېلان قىلىنغان ۋاقىت2022/6/29
ئىندېكىسلىنىشىSCI-E / Scopus
DOI نومۇرى10.3390/polym14132645
ئەسلى مەنبەدىن ئوقۇش ۋە تەكشۈرۈش
ئالدىنقى ئەسەرSurface morphology and biochemical characteristics of electrospun cellulose nanofibril reinforced PLA/PBS hollow scaffold for tissue engineering
كېيىنكى ئەسەرMETHOD FOR PRODUCING HOLLOW FIBER SCAFFOLD

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