基于唑嵌入钼氧化物颗粒和低聚金属氧化物外壳的рH-敏感缓蚀容器结构

IF 0.1 Q4 MULTIDISCIPLINARY SCIENCES DOKLADY NATSIONALNOI AKADEMII NAUK BELARUSI Pub Date : 2022-07-01 DOI:10.29235/1561-8323-2022-66-3-287-293
A. S. Logvinovich, T. V. Sviridova, E. Skorb, D. Sviridov, V. Agabekov
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引用次数: 0

摘要

采用含氧化合物的缩聚反应合成了由层状氧化钼制成的芯体与3-单-1,2,4-三唑(其表现为缓蚀剂)覆盖的容器结构,所述芯体由聚合氧化钨制成的壳覆盖。结果表明,在酸性(pH<5.5)和碱性(pH>8.5)介质中,涂层的连续性似乎被可逆地破坏,这有助于从容器中释放包封的化合物。低聚金属酸盐外壳固有的氧化还原活性允许通过与电镀镍共沉淀来固定合成的容器,而由于伴随腐蚀过程的局部pH值变化而打开容器的可能性确保了所得金属基体涂层的自主腐蚀保护。
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Creating the рH-sensitive corrosion-inhibiting container structures based on the azole-intercalated molybdenum oxide particles with oligooxometalate shell
The container structures consisting of the core made of layered molybdenum oxide intercalated with 3-amono-1,2,4-triazole (it behaves as the corrosion inhibitor) capped with the shell made of polymerized tungsten oxide were synthesized employing the polycondensation of oxocompounds. It is shown that in the acid (pH < 5.5) and alkali (pH > 8.5) media, the coating continuity appears to be broken reversibly, which facilitates the emission of the encapsulated compounds from the containers. The intrinsic redox activity inherent into the oligooxometalate shell permits one to immobilize the synthesized containers by co-precipitation with galvanic nickel, whereas the possibility to open the container as a result of local pH value variations accompanying the corrosion process ensures the autonomic corrosion protection of the resultant metal-matrix coatings.
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DOKLADY NATSIONALNOI AKADEMII NAUK BELARUSI
DOKLADY NATSIONALNOI AKADEMII NAUK BELARUSI MULTIDISCIPLINARY SCIENCES-
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