木质素
材料科学
固化(化学)
共晶体系
傅里叶变换红外光谱
深共晶溶剂
腐蚀
化学工程
锆
铝
混合材料
溶剂
涂层
立方氧化锆
电化学
复合材料
浸出(土壤学)
硫酸
作者
Estíbaliz Rodríguez Cambero,Ana Viñuales,A. Altube,Jalel Labidi,Xabier Erdocia,Xabier Aparicio,Hans‐Jürgen Grande,Eva García‐Lecina
标识
DOI:10.1021/acssuschemeng.5c10099
摘要
This work presents a new sustainable hybrid protective coating obtained by the direct incorporation of modified lignin dissolved in a natural deep eutectic solvent (NADES) into a sol–gel formulation based on a mixture of organosilanes and zirconium alkoxides. Viscosity measurements showed that the presence of lignin improves the shelf life of the initial hybrid formulation. Hybrid coatings with 0% and 3% (w/w) lignin were prepared by dip-coating on Al2024. The presence of lignin lowers the curing temperature and allows preparation of anticorrosion coatings even at room temperature. This was confirmed by FTIR analyses where the cross-linking density in the lignin containing coatings cured at room temperature is comparable to the thermally cured coatings. The formed coatings are homogeneous, defect-free, and hydrophobic. Regarding the electrochemical behavior of the coatings, room temperature cured 3 wt % lignin containing coatings on aluminum surfaces show the best anticorrosion performance even if they are thinner than the lignin-free coatings. Summarizing, the results obtained in this work open the possibility of producing sustainable protective coatings by taking advantage of using natural resources, reusing industrial paper making byproducts such as lignin, and using a room temperature curing process to obtain the protective coatings.
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