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Synthesis of ordered lamellar supermicroporous silica with rigid neutral and long-chain cationic composite templating route

机译:刚性中性和长链阳离子复合模板路线的有序层状超微孔二氧化硅的合成

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摘要

Using a mixture of neutral primary amine dehydroabietylamine (DHAA) and long-chain cetyltrimethyl ammonium bromide (CTAB) as the template, ordered lamellar supermicroporous silicas were synthesized with NaOH as the base source and tetraethylorthosilicate (TEOS) as the silica source. The concentrations of DHAA, CTAB, and NaOH in the synthesis system had great effects on the structural properties of the samples. When the molar ratio of components was nTEOS:nCTAB:nDHAA:nNaOH:nH2O = 1:0.114:0.00457:0.5:60, the material showed a lamellar phase with the highest ordering degree. By adding only a trace amount of DHAA into the synthesis system, the structure of the samples could be transformed from cubic phase to lamellar phase, since the added DHAA solubilized in CTAB micelles to change the effective surfactant ion pair packing parameter. The dosage of CTAB should be moderate; too high or too low will decay the ordering degree of the lamellar structure.A much higher concentration of NaOH resulted in an ethanol-rich solvent in which the DHAA did not solubilize in the micelles of CTAB, but adsorbed at the hydrophilic headgroup–solvent interface. Accordingly, a structural transformation from lamellar phase to hexagonal phase occurred.
机译:以中性伯胺脱氢松香胺(DHAA)和长链十六烷基三甲基溴化铵(CTAB)的混合物为模板,以NaOH为基础原料,以原硅酸四乙酯(TEOS)为原料合成了有序层状超微孔二氧化硅。合成系统中DHAA,CTAB和NaOH的浓度对样品的结构性能有很大影响。当组分的摩尔比为nTEOS:nCTAB:nDHAA:nNaOH:nH2O = 1:0.114:0.00457:0.5:60时,该材料显示出具有最高有序度的层状相。通过仅在合成系统中添加微量DHAA,样品的结构就可以从立方相转变为层状相,因为添加的DHAA溶解在CTAB胶束中,从而改变了有效的表面活性剂离子对堆积参数。 CTAB的剂量应适中;太高或太低都会破坏层状结构的有序度。更高的NaOH浓度会导致形成富含乙醇的溶剂,其中DHAA不会溶解在CTAB的胶束中,但会吸附在亲水性头基-溶剂界面。因此,发生了从层状相到六方相的结构转变。

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