Di Michele Alessandro, Boccalon Elisa, Costantino Ferdinando, Bastianini Maria, Vivani Riccardo, Nocchetti Morena
Department of Physics and Geology, University of Perugia, Via Pascoli, 006123 Perugia, Italy.
Department of Chemistry, Biology and Biotechnology, University of Perugia, Via Elce di sotto, 8, 006123 Perugia, Italy.
Dalton Trans. 2024 Jul 30;53(30):12543-12553. doi: 10.1039/d4dt01529k.
Layered double hydroxides (LDHs) are a class of layered solids applied in many application fields. The study of synthetic methods able to control the interlayer composition and morphology of LDH is an open issue. The urea method, which exploits the thermal decomposition of urea, is known for yielding highly crystalline LDH in the carbonate form. This form is highly stable and, to replace carbonate ions with more easily exchangeable anions, a second step is required. In this work, we modified the urea method to obtain MgAl and ZnAl LDH in the chloride or nitrate form through a one-step synthesis. The effects of the urea/(Al + M(II)) molar ratio (), reaction time and metal salt concentrations were deeply investigated. We found that LDH in chloride and nitrate forms can be prepared from solutions of metal salts not exceeding 1 M by adjusting and maintaining the reaction time at 48 hours. The morphology of these products was found to depend on the value and on the metal salts used in the synthesis. A high value and nitrate salts favoured the formation of sand-rose crystals, while chloride salts induced the formation of plate-like crystals. The crystal growth mechanism and the parameters influencing the morphology are discussed with reference to ZnAl LDH by monitoring the synthesis over time.
层状双氢氧化物(LDHs)是一类应用于许多领域的层状固体。能够控制LDH层间组成和形态的合成方法的研究是一个未解决的问题。利用尿素热分解的尿素法以生成碳酸盐形式的高结晶度LDH而闻名。这种形式非常稳定,为了用更易交换的阴离子取代碳酸根离子,需要第二步。在这项工作中,我们改进了尿素法,通过一步合成获得氯化物或硝酸盐形式的MgAl和ZnAl LDH。深入研究了尿素/(Al + M(II))摩尔比()反应时间和金属盐浓度的影响。我们发现,通过调节并将反应时间保持在48小时,可以从不超过1 M的金属盐溶液中制备氯化物和硝酸盐形式的LDH。发现这些产物的形态取决于值和合成中使用的金属盐。高值和硝酸盐有利于砂玫瑰晶体的形成,而氯化物盐则诱导片状晶体的形成。通过监测随时间的合成,参照ZnAl LDH讨论了晶体生长机理和影响形态的参数。