Optical and biological properties of MgO/ZnO nanocomposite derived via eggshell membrane: a bio-waste approach

被引:12
作者
Suvaitha, S. Prashanna [1 ]
Divya, T. [1 ]
Sridhar, P. [2 ]
Palani, P. [2 ]
Venkatachalam, K. [1 ]
机构
[1] Univ Madras, Dept Analyt Chem, Guindy Campus, Chennai 600025, Tamil Nadu, India
[2] Univ Madras, Ctr Adv Studies Bot, Guindy Campus, Chennai, Tamil Nadu, India
关键词
MgO/ZnO; Nanocomposite; Eggshell membrane; Minimum inhibitory concentration; Antibacterial; Antifungal; MAGNESIUM-OXIDE NANOPARTICLES; ZNO; MGO; ANTIBACTERIAL; NANOSTRUCTURES; ANTICANCER; ZNO/MGO;
D O I
10.1007/s00449-022-02811-y
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
A novel synthesis of MgO/ZnO nanocomposite using a template, namely an eggshell membrane (ESM) was attempted. The nanocomposite was characterized by XRD, UV-visible, FTIR, Raman, DLS (zeta potential and particle size distribution), FESEM with EDX, and HRTEM analysis. The presence of periclase cubic MgO (space group Fm3m) and hexagonal wurtzite ZnO (space group P63mc) structures was verified by the XRD results. The average crystallite size of the MgO/ZnO nanocomposite was equal to 9.43 nm. The nanocomposite exhibited an on-set of absorbance close to 300 nm. From the taucs plot, the bandgap of the composite was calculated, and it was equal to 3.63 eV. The FTIR spectrum of the composite showed Mg-O stretching vibration at 455 cm(-1) and that of Zn-O at 564 cm(-1). The zeta potential and the particle size distribution of the nanocomposite were equal to - 35.5 mV and 176.1 nm. The FESEM images of the nanocomposite appeared as an aggregated honeycomb with a cubic and hexagonal structure. The EDX analysis showed the presence of Mg (23.65 atom%), Zn (27.95 atom%), and 0 (48.40 atom%). The antibacterial and antifungal activities of the nanocomposite were investigated using the agar-well diffusion method. The antibacterial activity exhibited the highest zone of inhibition for Bacillus subtilis (25 +/- 0.41 mm) and Shigella dysenteria (25 +/- 0.19 mm), whereas the antifungal activity showed the highest zone of inhibition for Aspergillus terrus (27 +/- 0.25 mm) The MIC value of the nanocomposite was equal to 9.37 (mu g/mL) for all the bacteria. Hence, it is verified that the present MgO/ZnO nanocomposite could very well be used to treat bacterial and fungal infections. [GRAPHICS] .
引用
收藏
页码:39 / 51
页数:13
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