Co(II)-TiO2/Ti Thin Film as Antibacterial Photocatalysts Escherichia Coli Under Visible Light Ilumination

A. B. Aritonang, Nuri Rozaqina, H. Harlia
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Abstract

A thin layer of TiO2 doped with Cobalt (II) immobilized on the surface of a titanium foil (Co(II)-TiO2/Ti) has been synthesized from a titanium foil (Ti) as a TiO2 precursor as well as a thin layer matrix and CoCl2.6H2O as a source of Co(II) on variations of 0.5%, 1% and 2%. Synthesis was carried out by anodizing method using ethylene glycol electrolyte solution with the addition of NH4F and followed by calcination treatment at 450ºC for 3 hours. The obtained Co(II)-TiO2 /Ti thin films were characterized using Fourier-transform infrared (FT-IR) spectroscopy, Diffuse Reflectance UV-Vis (DRSUV-Vis) and X-ray diffraction (XRD) methods. Doping Co(II) variations of 0.5%, 1.0% dan 2.0% in the TiO2 structure causes a shift in the vibrational absorption peak of Ti-O (460.99 cm-1) towards a smaller wave number of 459.06 cm-1 respectively ; 453.27 cm-1 and 451.34 cm-1. This is supported by the results of the DRUV-Vis analysis using the tauc plot method, which shows a decrease in the band gap energy of TiO2 (3.24 eV) to 2.57 eV, 2.47 eV and 2.28 eV. Based on XRD analysis, it is known that the Co(II)-TiO2/Ti photocatalyst has anatase phase with a crystal size of 15-17 nm. The photocatalytic activity of Co(II)-TiO2/Ti under visible light illumination was evaluated for inhibition of Escherichia coli bacterial growth. Co(II)-TiO2/Ti photocatalyst at 2.0% Co(II) concentration had the best inhibition (43.2%) compared to 0.5% and 1.0% Co(II) concentrations, respectively 18% inhibition and 27%.
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在可见光照射下作为抗菌光催化剂的 Co(II)-TiO2/Ti 薄膜:大肠杆菌
以钛箔 (Ti) 作为二氧化钛前驱体和薄层基质,以 CoCl2.6H2O 作为钴 (II) 的来源,以 0.5%、1% 和 2% 的变化率合成了固定钴 (II) 的二氧化钛薄层 (Co(II)-TiO2/Ti)。合成采用阳极氧化法,使用乙二醇电解质溶液,加入 NH4F,然后在 450ºC 煅烧 3 小时。使用傅立叶变换红外光谱(FT-IR)、漫反射紫外可见光(DRSUV-Vis)和 X 射线衍射(XRD)方法对获得的 Co(II)-TiO2 /Ti 薄膜进行了表征。在 TiO2 结构中分别掺入 0.5%、1.0% 和 2.0% 的 Co(II)会导致 Ti-O 的振动吸收峰(460.99 cm-1)向较小的波数移动,分别为 459.06 cm-1、453.27 cm-1 和 451.34 cm-1。使用陶氏图法进行的 DRUV-Vis 分析结果表明,TiO2 的带隙能(3.24 eV)降低到了 2.57 eV、2.47 eV 和 2.28 eV。根据 XRD 分析可知,Co(II)-TiO2/Ti 光催化剂具有锐钛矿相,晶体尺寸为 15-17 nm。评估了 Co(II)-TiO2/Ti 在可见光照射下抑制大肠杆菌生长的光催化活性。Co(II)-TiO2/Ti光催化剂的Co(II)浓度为2.0%时,抑制效果最好(43.2%),而Co(II)浓度为0.5%和1.0%时,抑制效果分别为18%和27%。
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