Department of Polymer and Textile Engineering, Federal University of Technology, Owerri, Nigeria.
Centre for Advanced Material and Energy Sciences (CAMES), Universiti Brunei Darussalam, Jalan Tungku Link, Gadong BE1410, Brunei Darussalam.
Int J Biol Macromol. 2024 Jun;269(Pt 2):132065. doi: 10.1016/j.ijbiomac.2024.132065. Epub 2024 May 6.
Natural gums due to availability, multifunctionality, and nontoxicity are multifaceted in application. In corrosion inhibition applications, their performance, in unmodified form is unsatisfactory because of high hydration rate, solubility issues, algal and microbial contamination, as well as thermal instability. This work attempts to enhance the inhibitive performance of Berlinia grandiflora (BEG) and cashew (CEG) exudate gums through various modification approaches. The potential of biogenic BEG and CEG gums-silver (Ag) nanocomposites (NCPs) for corrosion inhibition of mild steel in 1 M HCl is studied. The nanocomposites were characterized using the FTIR, UV-vis, and TEM techniques. The corrosion studies through the gravimetric and electrochemical (PDP, EIS, LPR, and EFM) analyses reveal moderate inhibition performance by the nanocomposites. Furthermore, the PDP results reveal that both inhibitors are mixed-type with maximum corrosion inhibition efficiencies (IEs) of 61.2 % and 54.2 % for BEG-Ag NCP and CEG-Ag NCP, respectively at an optimum concentration of 1.0 %. Modification of these inhibitors with iodide ion (KI) significantly increased the IE values to 90.1 % and 88.5 % for BEG-Ag NCP and CEG-Ag NCP at the same concentration. Surface observation of the uninhibited and inhibited steel samples using SEM/EDAX, 3D Surface profilometer, and AFM affirm that the modified nanocomposites are highly effective.
天然胶因其可用性、多功能性和非毒性而在应用中具有多方面的特点。在缓蚀应用中,由于其高水合率、溶解度问题、藻类和微生物污染以及热不稳定性,未经修饰的天然胶的性能并不令人满意。本工作试图通过各种修饰方法来提高柏林利亚大花(BEG)和腰果(CEG)渗出胶的抑制性能。研究了生物源 BEG 和 CEG 胶-银(Ag)纳米复合材料(NCPs)在 1M HCl 中对低碳钢的缓蚀作用。采用 FTIR、UV-vis 和 TEM 技术对纳米复合材料进行了表征。通过重量法和电化学(PDP、EIS、LPR 和 EFM)分析进行腐蚀研究,发现纳米复合材料具有中等的抑制性能。此外,PDP 结果表明,两种抑制剂均为混合型,在最佳浓度 1.0%时,BEG-Ag NCP 和 CEG-Ag NCP 的最大腐蚀抑制效率(IE)分别为 61.2%和 54.2%。用碘离子(KI)修饰这些抑制剂可将 IE 值显著提高至 90.1%和 88.5%,对于 BEG-Ag NCP 和 CEG-Ag NCP 均在相同浓度下。使用 SEM/EDAX、3D 表面轮廓仪和 AFM 对未受抑制和受抑制的钢样进行表面观察,证实修饰后的纳米复合材料非常有效。