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Tuning surface properties of amino-functionalized silica for metal nanoparticle loading: The vital role of an annealing process

机译:调整氨基官能化二氧化硅用于金属纳米粒子负载的表面性质:退火过程的重要作用

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Metal nanoparticles (NPs) loaded on oxides have been widely used as multifunctional nanomaterials in various fields such as optical imaging, sensors, and heterogeneous catalysis. However, the deposition of metal NPs on oxide supports with high efficiency and homogeneous dispersion still remains elusive, especially when silica is used as the support. Amino-functionalization of silica can improve loading efficiency, but metal NPs often aggregate on the surface. Herein, we report that a facial annealing of amino-functionalized silica can significantly improve the dispersion and enhance the loading efficiency of various metal NPs, such as Pt, Rh, and Ru, on the silica surface. A series of characterization techniques, such as diffuse reflectance infrared Fourier transform spectroscopy (DRIFTS), Zeta potential analysis, UV-Vis spectroscopy, thermogravimetric analysis coupled with infrared analysis (TGA-IR), and nitrogen physisorption, were employed to study the changes of surface properties of the amino-functionalized silica before and after annealing. We found that the annealed amino-functionalized silica surface has more cross-linked silanol groups and relatively lesser amount of amino groups, and less positively charges, which could be the key to the uniform deposition of metal NPs during the loading process. These results could contribute to the preparation of metal/oxide hybrid NPs for the applications that require uniform dispersion. (C) 2015 Elsevier B.V. All rights reserved.
机译:负载在氧化物上的金属纳米颗粒(NPs)已广泛用作光学成像,传感器和非均相催化等各种领域中的多功能纳米材料。然而,金属NP在氧化物载体上的高效沉积和均匀分散仍然难以实现,特别是当使用二氧化硅作为载体时。二氧化硅的氨基官能化可以提高加载效率,但是金属NP通常会聚集在表面上。本文中,我们报道了氨基官能化二氧化硅的表面退火可以显着改善分散性并提高二氧化硅表面上各种金属NP(例如Pt,Rh和Ru)的负载效率。利用漫反射红外傅里叶变换光谱(DRIFTS),Zeta电位分析,UV-Vis光谱,热重分析结合红外分析(TGA-IR)和氮物理吸附等一系列表征技术来研究退火前后的氨基官能化二氧化硅的表面性质。我们发现,经退火的氨基官能化二氧化硅表面具有更多的交联硅烷醇基团和相对较少的氨基基团,以及较少的带正电,这可能是加载过程中金属NP均匀沉积的关键。这些结果可能有助于制备金属/氧化物杂化NP,用于需要均匀分散的应用。 (C)2015 Elsevier B.V.保留所有权利。

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