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用二元羧酸对硝酸氢氧化锌和锌铝层状双氢氧化物进行化学改性。

Chemical modification of zinc hydroxide nitrate and Zn-Al-layered double hydroxide with dicarboxylic acids.

作者信息

Arizaga Gregorio Guadalupe Carbajal, Mangrich Antonio Salvio, da Costa Gardolinski José Eduardo Ferreira, Wypych Fernando

机构信息

Laboratório de Química do Estado Sólido, Centro de Pesquisas em Química Aplicada, Universidade Federal do Paraná, CP 19081, 81531-990 Curitiba, PR, Brazil.

出版信息

J Colloid Interface Sci. 2008 Apr 1;320(1):168-76. doi: 10.1016/j.jcis.2007.12.038. Epub 2008 Feb 19.

DOI:10.1016/j.jcis.2007.12.038
PMID:18243238
Abstract

A zinc hydroxide nitrate (ZHN), Zn5(OH)8(NO3)2.2H2O, and a layered double hydroxide (LDH), Zn/Al-NO3 were doped with 0.2 mol% of Cu2+ during alkaline chemical precipitation. Both compounds were intercalated with adipate ((-)OOC(CH2)4COO(-)), azelate ((-)OOC(CH2)7COO(-)), and benzoate (C6H5COO(-)) ions through ion exchange reactions. Solid state 13C nuclear magnetic resonance spectroscopy showed only one signal of carboxylic carbon for adipate and azelate intercalated into LDH, indicating that the carboxylic ends of both acids were equivalent, whereas the signal split when the intercalation was into the ZHN matrix. The electron paramagnetic resonance (EPR) spectrum of copper in octahedral cation sites of LDH layers showed a Hamiltonian parameter ratio g ||/A ||=170 cm and, after intercalation of adipate, the change was not significant: g ||/A ||=174 cm. This result indicates that the carboxylate ions did not coordinate with copper centers. Nonetheless, the intercalation of azelate increased the ratio to g ||/A ||=194 cm, similar to the spectra of ZHN modified with adipate, g ||/A ||=199 cm, and azelate, g ||/A ||=183 and 190 cm, which are associated with the coordination of copper by weak carboxylate anion ligands. Copper occupies octahedral or tetrahedral sites in ZHN layers, and the EPR spectra indicate that the dicarboxylate anions reacted preferentially with octahedral sites, whereas benzoate reacted with both sites.

摘要

在碱性化学沉淀过程中,向硝酸氢氧化锌(ZHN),即Zn5(OH)8(NO3)2·2H2O和层状双氢氧化物(LDH),即Zn/Al-NO3中掺杂0.2 mol%的Cu2+。通过离子交换反应,使这两种化合物都嵌入己二酸根((-)OOC(CH2)4COO(-))、壬二酸根((-)OOC(CH2)7COO(-))和苯甲酸根(C6H5COO(-))离子。固态13C核磁共振光谱显示,嵌入LDH中的己二酸根和壬二酸根的羧基碳只有一个信号,这表明两种酸的羧基端是等效的,而当嵌入ZHN基质时信号发生分裂。LDH层八面体阳离子位点中铜的电子顺磁共振(EPR)光谱显示哈密顿参数比g||/A|| = 170 cm,己二酸根嵌入后,变化不显著:g||/A|| = 174 cm。该结果表明羧酸根离子没有与铜中心配位。尽管如此,壬二酸根的嵌入使该比值增加到g||/A|| = 194 cm,类似于用己二酸根改性的ZHN的光谱,g||/A|| = 199 cm,以及壬二酸根的光谱,g||/A|| = 183和190 cm,这与弱羧酸根阴离子配体与铜的配位有关。铜占据ZHN层中的八面体或四面体位点,EPR光谱表明二羧酸根阴离子优先与八面体位点反应,而苯甲酸根与两个位点都反应。

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