Akkari Marwa, Aranda Pilar, Ben Haj Amara Abdessalem, Ruiz-Hitzky Eduardo
Instituto de Ciencia de Materiales de Madrid, CSIC, c/ Sor Juana Inés de la Cruz 3, Cantoblanco, 28049 Madrid, Spain; Laboratory of Physics of Lamellar Materials and Hybrid Nano-Materials (LPLMHNM), Faculty of Sciences of Bizerte, University of Carthage, 7021 Zarzouna, Tunisia.
Instituto de Ciencia de Materiales de Madrid, CSIC, c/ Sor Juana Inés de la Cruz 3, Cantoblanco, 28049 Madrid, Spain.
Beilstein J Nanotechnol. 2016 Dec 12;7:1971-1982. doi: 10.3762/bjnano.7.188. eCollection 2016.
In this study, ZnO/SiO-clay heterostructures were successfully synthesized by a facile two-step process applied to two types of clays: montmorillonite layered silicate and sepiolite microfibrous clay mineral. In the first step, intermediate silica-organoclay hybrid heterostructures were prepared following a colloidal route based on the controlled hydrolysis of tetramethoxysilane in the presence of the starting organoclay. Later on, pre-formed ZnO nanoparticles (NP) dispersed in 2-propanol were incorporated under ultrasound irradiation to the silica-organoclay hybrid heterostructures dispersed in 2-propanol, and finally, the resulting solids were calcinated to eliminate the organic matter and to produce ZnO nanoparticles (NP) homogeneously assembled to the clay-SiO framework. In the case of montmorillonite the resulting materials were identified as delaminated clays of ZnO/SiO-clay composition, whereas for sepiolite, the resulting heterostructure is constituted by the assembling of ZnO NP to the sepiolite-silica substrate only affecting the external surface of the clay. The structural and morphological features of the prepared heterostructures were characterized by diverse physico-chemical techniques (such as XRD, FTIR, TEM, FE-SEM). The efficiency of these new porous ZnO/SiO-clay heterostructures as potential photocatalysts in the degradation of organic dyes and the removal of pharmaceutical drugs in water solution was tested using methylene blue and ibuprofen compounds, respectively, as model of pollutants.
在本研究中,通过一种简便的两步法成功合成了ZnO/SiO-粘土异质结构,该方法应用于两种类型的粘土:蒙脱石层状硅酸盐和海泡石微纤维粘土矿物。第一步,基于四甲氧基硅烷在起始有机粘土存在下的受控水解,通过胶体路线制备中间二氧化硅-有机粘土混合异质结构。随后,将分散在2-丙醇中的预制ZnO纳米颗粒(NP)在超声辐照下加入到分散在2-丙醇中的二氧化硅-有机粘土混合异质结构中,最后,将所得固体煅烧以去除有机物,并制备均匀组装到粘土-SiO骨架上的ZnO纳米颗粒(NP)。对于蒙脱石,所得材料被鉴定为具有ZnO/SiO-粘土组成的剥离粘土,而对于海泡石,所得异质结构由ZnO NP组装到海泡石-二氧化硅基底上构成,仅影响粘土的外表面。通过多种物理化学技术(如XRD、FTIR、TEM、FE-SEM)对所制备异质结构的结构和形态特征进行了表征。分别使用亚甲基蓝和布洛芬化合物作为污染物模型,测试了这些新型多孔ZnO/SiO-粘土异质结构作为潜在光催化剂在降解有机染料和去除水溶液中药物方面的效率。