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Structure of MnO nanoparticles embedded into channel-type matrices

机译:嵌入通道型基质中的MnO纳米颗粒的结构

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X-ray diffraction experiments were performed on MnO confined in mesoporous silica SBA-15 and MCM-41 matrices with different channel diameters. The measured patterns were analyzed by profile analysis and compared to numerical simulations of the diffraction from confined nanoparticles. From the lineshape and the specific shift of the diffraction reflections it was shown that the embedded objects form ribbon-like structures in the SBA-15 matrices with channels diameters of 47 - 87 angstrom, and nanowire-like structures in the MCM-41 matrices with channels diameters of 24 - 35 angstrom. In the latter case the confined nanoparticles appear to be narrower than the channel diameters. The physical reasons for the two different shapes of the confined nanoparticles are discussed.
机译:在受限于具有不同通道直径的中孔二氧化硅SBA-15和MCM-41基质中,对MnO进行了X射线衍射实验。通过轮廓分析对测得的图案进行分析,并将其与受限纳米颗粒衍射的数值模拟进行比较。从线形和衍射反射的特定位移可以看出,嵌入的物体在SBA-15矩阵中形成带状结构,通道直径为47-87埃,在MCM-41矩阵中形成纳米线状结构。通道直径为24-35埃。在后一种情况下,受限的纳米颗粒似乎比通道直径窄。讨论了两种不同形状的受限纳米粒子的物理原因。

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