Kwok Wing L J, Crivoi Dana-Georgiana, Chen Chunping, Buffet Jean-Charles, O'Hare Dermot
Chemistry Research Laboratory, University of Oxford, 12 Mansfield Road, Oxford, OX1 3TA, UK.
Dalton Trans. 2017 Dec 19;47(1):143-149. doi: 10.1039/c7dt03861e.
A series of silica@layered double hydroxides (SiO@MgAl-CO-AMO-LDHs) have been synthesised by in situ precipitation of MgAl-CO-LDH at room temperature in the presence of amorphous spherical silica particles (∼500 nm). We have systematically investigated a number of synthetic parameters in order to evaluate their effects on the composition, morphological and physical properties of the isolated materials. Syntheses carried out at moderate stirring speeds (e.g. 500 rpm) were found to promote the formation of vertically aligned LDH platelets with respect to the silica surface. Addition rates of the metal solutions slower than 0.43 mmol h were found to create a thicker LDH shell consisting of vertically aligned LDH platelets. When the metal solutions were added rapidly (0.86 mmol h), we observed that for both slow and fast stirring speeds the synthesised core-shell materials had thin LDH shells and the majority of the LDH precipitated independent of the silica, forming unbound "free" LDH.
通过在室温下,在无定形球形二氧化硅颗粒(约500纳米)存在的情况下原位沉淀MgAl-CO-LDH,合成了一系列二氧化硅@层状双氢氧化物(SiO@MgAl-CO-AMO-LDHs)。我们系统地研究了许多合成参数,以评估它们对分离材料的组成、形态和物理性质的影响。发现在中等搅拌速度(例如500转/分钟)下进行的合成促进了相对于二氧化硅表面垂直排列的LDH片层的形成。发现金属溶液的添加速率低于0.43 mmol/h会形成由垂直排列的LDH片层组成的更厚的LDH壳。当快速添加金属溶液(0.86 mmol/h)时,我们观察到,对于慢速和快速搅拌速度,合成的核壳材料都有薄的LDH壳,并且大部分LDH独立于二氧化硅沉淀,形成未结合的“游离”LDH。