材料科学
陶瓷
腐蚀
扫描电子显微镜
拉曼光谱
复合材料
氧化物
陶瓷基复合材料
傅里叶变换红外光谱
转化膜
化学工程
冶金
物理
工程类
光学
作者
Yongxin Guo,Lei Wang,Xue Sun
标识
DOI:10.1002/maco.202213271
摘要
Abstract In this study, nano‐alumina/graphene oxide (GO‐Al 2 O 3 ) nanohybrids were synthesized and incorporated into a ceramic matrix to enhance the anticorrosion performance of chemically bonded ceramic coatings. The interaction between GO and nano‐Al 2 O 3 was investigated using Fourier transform infrared spectroscopy, Raman spectroscopy, and scanning electron microscopy. Results showed that nano‐Al 2 O 3 was successfully decorated on the surface of GO through chemical bonds, which improved the bonding strength between GO and the ceramic matrix through the reaction of the aluminum phosphate binder with nano‐Al 2 O 3 . The unique structures of the GO‐Al 2 O 3 nanohybrids endowed the ceramic coatings with superior anticorrosion properties as compared to the untreated substrate and pure ceramic coatings. The best corrosion resistance of coatings was achieved when the content of the GO‐Al 2 O 3 nanohybrids was 0.6 wt%, which led to the highest protection efficiency (93.4%) and the smallest corrosion current ( i corr ). The improvement in the corrosion resistance of the ceramic coatings was attributed to the excellent compatibility and dispersibility of the GO‐Al 2 O 3 nanohybrids in the ceramic matrix. In addition, the greater bonding strength between the GO‐Al 2 O 3 nanohybrids and ceramic matrix could enable more fracture energy to be consumed. This in turn could block or change the diffusion pathway of cracks, resulting in higher corrosion resistance.
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