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首页> 外文期刊>Journal of Dispersion Science and Technology >Synthesis and characterization of gold nanoparticle-functionalized ordered mesoporous materials
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Synthesis and characterization of gold nanoparticle-functionalized ordered mesoporous materials

机译:金纳米粒子功能化有序介孔材料的合成与表征

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摘要

We report the synthesis and characterization of three different ordered mesoporous materials, labeled MCM-48, SBA-155, and SBA-16 type materials, which were functionalized with gold nanoparticles using three different strategies. The functionalization strategies can be categorized as (i) in situ growth of gold nanoparticles, (ii) template loading, and (iii) diffusion loading of prefabricated gold nanoparticles. Two different particle sizes were employed in the latter two strategies, 5 nm and 10 nm. For all mesoporous structures, functionalization strategies, and particle sizes attempted, the materials retained their long-range order upon incorporation of nanoparticles. From the adsorption isotherms, incorporation of gold nanoparticles altered the pore structure of the mesoporous support of some of the SBA-15 and SBA-16 type materials, with the effect on incorporation on the pore structure being particle size dependent in most cases. The majority of gold nanoparticles were found to reside on the external surface of the materials regardless of substrate and functionalization strategy; however, for the in situ synthesis and the template loading strategies, a significant fraction of the particles was determined to reside within the pore system of the material. In situ growth resulted in the highest content of gold nanoparticles in the solid phase. The relative effectiveness in retaining gold nanoparticles in the solid phase for each functionalization strategy was determined to be, in descending order, in situ synthesis, template loading, and diffusion loading.
机译:我们报告了三种不同的有序介孔材料,标记为MCM-48,SBA-155和SBA-16型材料的合成和表征,这些材料已使用三种不同的策略与金纳米颗粒进行了功能化。官能化策略可分类为(i)金纳米颗粒的原位生长,(ii)模板加载和(iii)预制金纳米颗粒的扩散加载。后两种策略采用两种不同的粒径:5 nm和10 nm。对于所有介孔结构,功能化策略和尝试的粒径,材料在掺入纳米粒子后仍保持其长程有序。根据吸附等温线,金纳米颗粒的掺入改变了某些SBA-15和SBA-16型材料的中孔载体的孔结构,在大多数情况下,对孔结构掺入的影响取决于颗粒大小。发现大多数金纳米颗粒都驻留在材料的外表面上,而与基材和功能化策略无关。然而,对于原位合成和模板加载策略,确定了很大一部分的颗粒驻留在材料的孔隙系统中。原位生长导致固相中金纳米颗粒的含量最高。对于每种功能化策略,将金纳米颗粒保留在固相中的相对有效性按降序确定为原位合成,模板加载和扩散加载。

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