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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >The Formation of the Mesoporous Material MCM-41 as Studied by EPR Line Shape Analysis of Spin Probes
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The Formation of the Mesoporous Material MCM-41 as Studied by EPR Line Shape Analysis of Spin Probes

机译:用自旋探针的EPR线形分析研究介孔材料MCM-41的形成

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摘要

The formation mechanism of the hexagonal mesoporous material MCM-41, prepared with tetraethyl-orthosilicon (TEOS) and cetyl-trimethylammonium chloride (bromide) (CTAC/B), was investigated through the motional characteristics of the spin probe 5-doxyl stearic acid (5DSA). Electron spin echo envelope modulation (ESEEM) experiments, carried out on the final product, showed that the spin probe is incorporated into the organic part and the nitride radical is located near the organic-inorganic interface. The EPR spectra of 5DSA were measured in situ during the formation of MCM-41 at 298 K. The spectra were analyzed by computer simulations that provide the time evolution of the rotational diffusion rates, R_⊥ and R_‖, and of the ordering potential. As the reaction progresses, the spin probe, which reflects the behavior of the surfactant molecules, experiences an increasing order parameter, S, while its rotational diffusion rates decrease. From the time evolution of these parameters two stages were distinguished. During the first, which lasts about 12 min, S, R_⊥ and R_‖ change rapidly whereas during the second, which lasts about 1 h, R_⊥ and R_‖ remain essentially constant while S exhibits a mild increase. The fast stage is assigned to the onset of orientational ordering and silicate condensation, which occur simultaneously, while the slow process reflects the "hardening" of the silica wall.
机译:通过自旋探针5-doxyl硬脂酸(b)的运动特性,研究了由四乙基原硅(TEOS)和十六烷基三甲基氯化铵(溴化物)(CTAC / B)制备的六角形介孔材料MCM-41的形成机理。 5DSA)。在最终产品上进行的电子自旋回波包络调制(ESEEM)实验表明,自旋探针被并入有机部分,而氮化物基团位于有机-无机界面附近。在298 K MCM-41形成过程中,对5DSA的EPR光谱进行了现场测量。通过计算机模拟对光谱进行了分析,这些模拟提供了旋转扩散速率R_⊥和R_′以及有序势的时间演化。随着反应的进行,反映表面活性剂分子行为的自旋探针经历了递增的阶数参数S,而旋转扩散速率却降低了。从这些参数的时间演变可以区分两个阶段。在第一个持续约12分钟的过程中,S,R_l和R_′快速变化,而在第二个持续约1h的过程中,R_l和R_′基本保持恒定,而S表现出轻微的增加。快速阶段是同时发生的取向有序和硅酸盐缩合的开始,而缓慢的过程则反映了二氧化硅壁的“硬化”。

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