首页> 外文OA文献 >Interlayer intercalation and arrangement of 2-mercaptobenzothiazolate and 1,2,3-benzotriazolate anions in layered double hydroxides: In situ X-ray diffraction study
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Interlayer intercalation and arrangement of 2-mercaptobenzothiazolate and 1,2,3-benzotriazolate anions in layered double hydroxides: In situ X-ray diffraction study

机译:层状双氢氧化物中2-巯基苯并噻唑酸酯和1,2,3-苯并三唑酸酯阴离子的层间插层和排列:原位X射线衍射研究

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摘要

2-mercaptobenzothiazole (MBT) and 1,2,3-benzotriazole (BTA) are very promising inhibitors for the corrosion protection of aluminum alloys. These inhibitors can be incorporated in protective coatings in the form of anions intercalated into interlayers of layered double hydroxides (LDHs). Capacity and performance of such LDH-nanocontainers depend on the arrangement of the anions in their interlayers. In this work, intercalation of MBT- and BTA(-) into Mg-Al-NO3 and Zn-Al-NO3 LDHs were studied in detail using X-ray diffraction (XRD) methods including in situ XRD. The nitrate-to-MBT(BTA) anion exchange is much faster than considered previously. Well-formed Mg-Al-MET, Zn-Al-MBT, Mg-Al-ETA LDHs were obtained after a 20-min exchange reaction at pH 11.5 at room temperature. It was demonstrated that Zn-Al-BTA LDH cannot be obtained under the same conditions due to the reaction between BTA and the Zn-Al hydroxide layers. Substitution of nitrates by organic anions occurs with the participation of hydroxide anions. Although no intermediate LDH phase intercalated with the combination of NO3- and OH- appears, formation of the LDH-MBT and LDH-BTA phases results also in appearance of an LDH phase intercalated with OH- at the final stage of the anion exchange. In the LDH interlayer, MBT- and BTA(-) form a double layer in which these species have a tilted orientation against the layer plane (herringbone like arrangement). Such an arrangement meets the LDH layer-interlayer electroneutrality and matches well with the observed values of the layer-interlayer distance. (C) 2015 Elsevier Inc. All rights reserved.
机译:2-巯基苯并噻唑(MBT)和1,2,3-苯并三唑(BTA)是非常有前途的铝合金防腐剂。这些抑制剂可以阴离子形式插入保护性涂料中,该阴离子插入层状双氢氧化物(LDHs)的中间层中。这种LDH-纳米容器的容量和性能取决于阴离子在其夹层中的排列。在这项工作中,使用包括原位XRD的X射线衍射(XRD)方法详细研究了MBT-和BTA(-)插入Mg-Al-NO3和Zn-Al-NO3 LDH中。硝酸盐到MBT(BTA)的阴离子交换比以前考虑的要快得多。在室温,pH 11.5下进行20分钟的交换反应后,得到结构良好的Mg-Al-MET,Zn-Al-MBT,Mg-Al-ETA LDH。已经证明,由于BTA与Zn-Al氢氧化物层之间的反应,在相同条件下无法获得Zn-Al-BTA LDH。硝酸盐被有机阴离子取代,而氢氧根阴离子则参与其中。尽管没有出现插入有NO3-和OH-组合的中间LDH相,但是LDH-MBT和LDH-BTA相的形成也导致在阴离子交换的最后阶段出现了插入OH-的LDH相。在LDH中间层中,MBT-和BTA(-)形成双层,其中这些物质相对于层平面倾斜取向(类似人字形排列)。这样的布置满足LDH层-层间电中性并且与层-层间距离的观察值很好地匹配。 (C)2015 Elsevier Inc.保留所有权利。

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