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具有可逆pH响应的壳聚糖/单宁酸苯并嗪网络-中空介孔二氧化硅胶囊:作为“绿色”缓蚀剂的可控释放氨基酸衍生物

Chitosan/tannic acid phenamine networks-hollow mesoporous silica capsules with reversible pH response: Controlled-releasing amino acid derivatives as "green" corrosion inhibitor.

作者信息

Hu Jianfeng, Liu Wei

机构信息

School of Chemistry and Chemical Engineering, South China University of Technology, Guangzhou 510640, PR China.

School of Chemistry and Chemical Engineering, South China University of Technology, Guangzhou 510640, PR China.

出版信息

Carbohydr Polym. 2023 Nov 15;320:121244. doi: 10.1016/j.carbpol.2023.121244. Epub 2023 Jul 29.

Abstract

A novel amino acid derivative (SM) was synthesized through Schiff base reaction between syringaldehyde (SA) and methionine (MTI), and loaded to obtain a reversible pH-responsive releasing corrosion inhibitor silica capsule (CS/TA@SM@HMSs) with chitosan/tannic acid phenamine networks on the surface. The corrosion inhibition effect of SM and CS/TA@SM@HMSs on Q235 was studied using electrochemical techniques and surface analysis. The results showed the maximum inhibition efficiency of SM reached to 93.2 % at 200ppm by immersing Q235 in 3.5 wt% NaCl solution. The theoretically calculated electron parameter (the energy gap ΔE = 4.492 eV) indicated that SM molecules were more susceptible to electron transfer with iron surfaces therefore allowing better adsorption on carbon steel surfaces to prevent corrosion. Meanwhile, UV-visible measurements showed that the chitosan/tannic acid phenamine network on the capsule surface responded to changes in pH. The reversible pH-responsive corrosion inhibitor capsule can be switched on and off several times to release SM, demonstrating reversible release and efficient corrosion protection. This study proposes a novel class of "green" amino acid derivative corrosion inhibitors, and establishes a controllable, efficient and reversible pH-responsive release system. A new approach is provided to stimulating the release of corrosion inhibitors in response to long-term corrosion protection of metals.

摘要

通过丁香醛(SA)与蛋氨酸(MTI)之间的席夫碱反应合成了一种新型氨基酸衍生物(SM),并将其负载以获得表面带有壳聚糖/单宁酸苯二胺网络的具有可逆pH响应释放功能的缓蚀剂二氧化硅胶囊(CS/TA@SM@HMSs)。采用电化学技术和表面分析方法研究了SM和CS/TA@SM@HMSs对Q235的缓蚀效果。结果表明,将Q235浸入3.5 wt% NaCl溶液中,在200 ppm时SM的最大缓蚀效率达到93.2%。理论计算的电子参数(能隙ΔE = 4.492 eV)表明,SM分子更容易与铁表面发生电子转移,因此能更好地吸附在碳钢表面以防止腐蚀。同时,紫外可见光谱测量表明,胶囊表面的壳聚糖/单宁酸苯二胺网络对pH变化有响应。这种可逆pH响应的缓蚀剂胶囊可以多次开启和关闭以释放SM,证明了其具有可逆释放和高效腐蚀防护性能。本研究提出了一类新型的“绿色”氨基酸衍生物缓蚀剂,并建立了一种可控、高效且可逆的pH响应释放体系。为响应金属的长期腐蚀防护而刺激缓蚀剂的释放提供了一种新方法。

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