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首页> 外文期刊>Journal of Colloid and Interface Science >High surface area Au-SBA-15 and Au-MCM-41 materials synthesis: Tryptophan amino acid mediated confinement of gold nanostructures within the mesoporous silica pore walls
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High surface area Au-SBA-15 and Au-MCM-41 materials synthesis: Tryptophan amino acid mediated confinement of gold nanostructures within the mesoporous silica pore walls

机译:高表面积Au-SBA-15和Au-MCM-41材料合成:色氨酸氨基酸介导的介孔二氧化硅孔壁内金纳米结构的限制

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Advantages of confining the gold nanostructures formation within the mesoporous silica pore walls during its silica condensation and consequent improvement in the textural properties such as specific surface area, pore volume, pore diameter have been demonstrated, while retaining gold nanostructures within the silica walls. This has been achieved by tryptophan mediated confinement of gold nanoparticles formation within the condensing silica framework, to obtain Au-SBA-15 (SSA 1247m~2/g, V_t~1.37cm~3/g) and Au-MCM-41 (SSA 1287m~2/g, Vt~1.1cm~3/g), mesoporous silica materials having the combination of very high surface area from the porous support as well as gold nanoparticles infiltrated silica walls. Choice of tryptophan for this purpose is that it has an indole group, which was known to reduce gold ions to form gold nanoparticles and its amine and carboxylic acid groups, catalyze the hydrolysis of silica precursors in a wide range of pH. These properties have been utilized in restricting the gold nanostructures formation inside the condensing silica phase without affecting the self assembly between the silica precursors and the triblock copolymer (for SBA-15) or cetyltrimethylammonium bromide template (for MCM-41). The polytryptophan and the gold nanostructures, which were encapsulated within the silica framework and upon removal of the template by calcination resulting in the formation mesoporous materials wherein the silica walls become microporous due to the removal of occluded polytryptophan and the resulting microchannels contain very small gold nanostructures. Hence, the resulting materials have very high surface area, high pore volume and narrow pore size distribution as compared to their parent SBA-15, MCM-41 and SBA-15, MCM-41 post functionalized with gold nanoparticles inside the pores.
机译:在将金纳米结构保留在二氧化硅壁内的同时,已经证明了在其二氧化硅凝结过程中将金纳米结构限制在中孔二氧化硅孔壁内的优点,以及随之而来的结构性能例如比表面积,孔体积,孔径的改善。这是通过色氨酸介导的将金纳米颗粒的形成限制在缩合二氧化硅骨架内来实现的,以获得Au-SBA-15(SSA 1247m〜2 / g,V_t〜1.37cm〜3 / g)和Au-MCM-41(SSA) 1287m〜2 / g,Vt〜1.1cm〜3 / g),介孔二氧化硅材料具有从多孔载体到极高表面积的结合以及金纳米颗粒渗透的二氧化硅壁。为此目的选择色氨酸是因为它具有吲哚基团,已知该吲哚基团可还原金离子以形成金纳米颗粒及其胺基和羧酸基团,可在很宽的pH范围内催化二氧化硅前体的水解。这些性质已用于限制缩合二氧化硅相内部金纳米结构的形成,而不会影响二氧化硅前体与三嵌段共聚物(对于SBA-15)或十六烷基三甲基溴化铵模板(对于MCM-41)之间的自组装。聚色氨酸和金纳米结构被封装在二氧化硅骨架中,并且通过煅烧去除模板后形成中孔材料,其中二氧化硅壁由于去除了封闭的聚色氨酸而变成微孔,并且所得的微通道包含非常小的金纳米结构。因此,与其后的母体SBA-15,MCM-41和SBA-15,MCM-41用孔内的金纳米粒子进行功能化处理相比,所得材料具有非常高的表面积,高孔体积和狭窄的孔径分布。

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