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首页> 外文期刊>RSC Advances >Structural discrimination of nanosilica particles and mixed-structure silica by multivariate analysis applied to SAXS profiles in combination with FT-IR spectroscopy
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Structural discrimination of nanosilica particles and mixed-structure silica by multivariate analysis applied to SAXS profiles in combination with FT-IR spectroscopy

机译:通过多变量分析施用纳米硅颗粒和混合结构二氧化硅的结构辨别,施用与FT-IR光谱相结合的囊型分析

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The structural characteristics of silica nanoparticles with functional properties can be investigated using Fourier transform infrared (FT-IR) and small-angle X-ray scattering (SAXS) techniques. Herein, principal component analysis (PCA) and hierarchical cluster analysis (HCA) were used to analyze the variance and to detect similarities between spectroscopic and scattering data. To analyze its potentiality, nanosilica and mixed-structure silica samples were synthesized by a sol–gel process using several reagents, such as SiCl _(4) , octadecylamine, Pluronic?L-31, and Tween?80, to modify the surfaces of silica nanoparticles. Additionally, the quantities of these reagents used in synthesis of the different particle types were studied at distinct levels. A total of 168 measurements (IR spectra and X-ray scatterings) were performed using 28 samples. The FT-IR/SAXS/multivariate analysis results suggest that samples can be separated into two major groups associated with the incorporation of organic groups into the silica network and the organizational structures of aggregates in the low- q region, which separated the surface fractals (3.0 < P _(L) < 3.8, class I) from the mass fractals (1.7 < P _(L) < 2.8, classes II and III). It was determined that only two principal components carried over 96.5 and 89.7% of variance (FT-IR and SAXS, respectively) within the sample set. The organic groups in the hybrid mixed-structure silicas created more compact and denser silicas, increased the aggregate radii, decreased D _(p _(BJH) ) and S _(BET) , and shifted the halo toward higher 2 θ angles due to the changes in the densities of the silicas. We demonstrate that the FT-IR and SAXS techniques combined with multivariate analysis can simplify the interpretation of changes in the structural properties of mesoporous silica materials.
机译:可以使用傅里叶变换红外(FT-IR)和小角X射线散射(SAXS)技术来研究二氧化硅纳米粒子的结构特性。这里,主要成分分析(PCA)和分层聚类分析(HCA)用于分析方差并检测光谱和散射数据之间的相似性。为了分析其潜力,使用几种试剂(例如SiCl _(4),十八烷基胺,Pluronic?L-31和Tween?80,通过溶胶 - 凝胶工艺合成含有溶胶 - 凝胶工艺,例如SiCl _(4),和吐温,以改变二氧化硅纳米粒子。另外,在不同的水平下研究了合成不同颗粒类型的这些试剂的量。使用28个样品进行总共168个测量(IR光谱和X射线散射)。 FT-IR / SAX /多变量分析结果表明,样品可以分成与掺入二氧化硅网络中的有机群相关的两个主要组,以及低Q区域中的聚集体组织结构,其分离出表面分形( 3.0 _(l)<3.8,I类)来自质量分形(1.7 _(l)<2.8,等级II和III)。确定仅在样品集中携带超过96.5和89.7%的差异(分别为89.7%的两个主要成分。混合混合结构二氧化硅中的有机基团创造了更紧凑且更密集的二氧化硅,增加了聚集半径,降低了D _(P _(BJH))和S _(BET),并导致光环朝向更高的2θ角移动到更高的2θ角度Silicas密度的变化。我们证明,FT-IR和SAXS技术与多变量分析相结合,可以简化介孔二氧化硅材料结构性能变化的解释。

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