Preparation and Characterisations of Acrylic Epoxy/Polyethylene Glycol/Graphene Oxide Nanocomposites for Antibacterial Coating Applications

被引:0
|
作者
Dwandaru, Wipsar Sunu Brams [1 ]
Susanto, Duwi [1 ]
Achshuniya, Arina Fauza [1 ]
Harahap, Evan Fajri Mulia [1 ]
Fauzi, Fika [1 ]
机构
[1] Univ Negeri Yogyakarta, Fac Math & Nat Sci, Phys Educ Dept, Jl Colombo 1, Sleman 55281, Yogyakarta, Indonesia
关键词
Graphene oxide (GO); AE/PEG/GO nanocomposites; antibacterial coating; escherichia coli; staphylococcus aureus; COMPOSITE MEMBRANES; GRAPHENE;
D O I
10.21315/jps2024.35.3.4
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
This study addresses the urgent need for antibacterial coatings amid escalating concerns about pathogen contamination on various surfaces, particularly in healthcare settings and public spaces where infection control is critical. The development of durable and effective antibacterial coatings could significantly reduce harmful bacteria transmission and improve overall hygiene standards. Graphene oxide (GO) had exceptional antibacterial properties against a wide spectrum of bacteria. Here, the researchers explored the composite of GO with acrylic epoxy (AE) through the use of polyethylene glycol (PEG) to become AE/PEG/GO tertiary nanocomposites in enhancing GO's antibacterial efficacy. The objectives of this study were to prepare and characterise AE/PEG/GO nanocomposites and then investigate their antibacterial abilities against escherichia coli (E. coli) and staphylococcus aureus (S. aureus) bacteria. The GO was prepared using the modifiedHummers method, which was mechanically stirredwithAE and PEG to produce the AE/PEG/GO nanocomposites. This was followed by characterisations of the nanocomposites via ultraviolet-visible (UV-Vis) spectrophotometer, X-ray diffraction (XRD), Fourier transform infrared (FTIR) spectrometer and scanning electron microscope (SEM). The nanocomposites were then tested against E. coli and S. aureus bacteria by measuring the diameter of the inhibition zone (DIZ). The results showed that the absorption peak of GO was obtained at a wavelength of 236 nm. The diffraction pattern of the AE/PEG/GO nanocomposites showed amorphous structure with a small and wide peak at 2i around 23 degrees. The IR spectrum of the AE/PEG/GO nanocomposites indicated the presence of -OH, -CH3, -CH2, C=O, C-H, C-O and C=C functional groups. The surface morphology showed well-distributed nanocomposite coating onto glass slides with some micro islands. The nanocomposites exhibited promising antibacterial performance revealing higher efficacy against S. aureus compared to E. coli. This was shown by the performance ofAE/PEG/GO coating in inhibiting S. aureus bacteria with 1.55 mm larger DIZ compared to the positive control. However, the AE/PEG/GO coating exhibited smaller DIZ than the positive control with a difference of 3.68 mm in inhibiting E. coli bacteria. This study unveiled a simple and straightforward approach in producing nanocomposites for antibacterial coatings shedding light on their potential applications in safeguarding surfaces against bacterial contamination.
引用
收藏
页码:49 / 64
页数:16
相关论文
共 50 条
  • [1] Graphene Oxide as a Prospective Graft in Polyethylene Glycol for Enhancing the Toughness of Epoxy Nanocomposites
    Jayan, Jitha S.
    Saritha, Appukuttan
    Deeraj, Battula Durga Siva
    Joseph, Kuruvilla
    POLYMER ENGINEERING AND SCIENCE, 2020, 60 (04): : 773 - 781
  • [2] Synthesis and characterization of the nanocomposites of graphene oxide in polyethylene glycol (PEG)
    Negi, Abhishek
    Bijalwan, Kriti
    Rawat, Jyoti
    Sharma, Himani
    Dwivedi, Charu
    MATERIALS TODAY-PROCEEDINGS, 2021, 45 : 4742 - 4745
  • [3] Preparation and Properties of Polyethylene Oxide/Si-g-Polyethylene Glycol Nanocomposites
    Cao Y.
    Qi W.
    Tang L.
    Gaofenzi Cailiao Kexue Yu Gongcheng/Polymeric Materials Science and Engineering, 2019, 35 (05): : 123 - 128
  • [4] Development of silver/graphene oxide nanocomposites for antibacterial and antibiofilm applications
    Jang, Jaehee
    Choi, Yonghyun
    Tanaka, Masayoshi
    Choi, Jonghoon
    JOURNAL OF INDUSTRIAL AND ENGINEERING CHEMISTRY, 2020, 83 (46-52) : 46 - 52
  • [5] Preparation and properties of acrylic resin coating modified by functional graphene oxide
    Dong, Rui
    Liu, Lili
    APPLIED SURFACE SCIENCE, 2016, 368 : 378 - 387
  • [6] Preparation and Properties of Polyethylene Glycol Functionalized Graphene Oxide/Polyurethane Composites
    Fu W.
    Wang L.
    Huang J.
    Liu C.
    Peng W.
    Xiao H.
    Li S.
    Gaofenzi Cailiao Kexue Yu Gongcheng/Polymeric Materials Science and Engineering, 2021, 37 (11): : 101 - 109
  • [7] Preparation and characterization of functionalized graphene oxide/carbon fiber/epoxy nanocomposites
    Ashori, Alireza
    Rahmani, Hossein
    Bahrami, Reza
    POLYMER TESTING, 2015, 48 : 82 - 88
  • [8] In situ preparation of functionalized graphene oxide/epoxy nanocomposites with effective reinforcements
    Bao, Chenlu
    Guo, Yuqiang
    Song, Lei
    Kan, Yongchun
    Qian, Xiaodong
    Hu, Yuan
    JOURNAL OF MATERIALS CHEMISTRY, 2011, 21 (35) : 13290 - 13298
  • [9] Preparation and Properties of Epoxy Asphalt Modified by Biomimetic Graphene Oxide Nanocomposites
    Zhang, Fenglei
    Liu, Xiaodong
    Zhang, Lei
    Zhou, Song
    Huang, Kai
    JOURNAL OF MATERIALS IN CIVIL ENGINEERING, 2023, 35 (01)
  • [10] Preparation of graphene oxide/epoxy nanocomposites with significantly improved mechanical properties
    Galpaya, D.
    Wang, M.
    George, G.
    Motta, N.
    Waclawik, E.
    Yan, C.
    JOURNAL OF APPLIED PHYSICS, 2014, 116 (05)