首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Structural Analysis of Ligand-Protected Smaller Metallic Nanocrystals by Atomic Pair Distribution Function under Precession Electron Diffraction
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Structural Analysis of Ligand-Protected Smaller Metallic Nanocrystals by Atomic Pair Distribution Function under Precession Electron Diffraction

机译:通过电气衍射在衍射中原子对分布函数的致韧性保护较小金属纳米晶体的结构分析

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Atomic pair distribution function (PDF) analysis has been widely used to investigate nanocrystalline and structurally disordered materials. Experimental PDFs retrieved from electron diffraction (ePDF) in transmission electron microscopy (TEM) represent an attractive alternative to traditional PDF obtained from synchrotron X-ray sources, particularly for studying minute samples. Nonetheless, the inelastic scattering produced by the large dynamical effects of electron diffraction may obscure the interpretation of ePDF. In the present work, precession electron diffraction (PED-TEM) has been employed to obtain the ePDF of two different samples-lipoic acid- and hexanethiolate-capped gold nanoparticles (similar to 4.5 and 4.2 nm, respectively) randomly oriented and measured at both liquid nitrogen and room temperatures. The electron diffraction data were processed to obtain ePDFs which were subsequently compared with the PDF of different ideal structure models. The results demonstrate that the PED-ePDF data are sensitive to different crystalline structures such as monocrystalline (truncated octahedra) and multiply twinned (decahedra, icosahedra) structures. The results indicate that PED reduces the residual from 46 to 29%; in addition, the combination of PED and low temperature further reduced the residual to 23%, which is comparable to X-ray PDF analysis. Furthermore, the inclusion of PED resulted in a better estimation of the coordination number from ePDF. To the best of our knowledge, the precessed electron-beam technique (PED) has not been previously applied to nanoparticles for analysis by the ePDF method.
机译:原子对分布函数(PDF)分析已被广泛用于研究纳米晶和结构性无序的材料。从检索到的实验的PDF电子衍射(EPDF)在透射电子显微镜(TEM)代表一个有吸引力的替代从同步辐射X射线源获得的,特别是用于研究分钟样品传统PDF。尽管如此,通过电子衍射的大动态效应产生的非弹性散射可能会掩盖EPDF的解释。另外,在本工作中,旋进电子衍射(PED-TEM)已被用来获得两个不同的样品硫辛酸酸和hexanethiolate封端的金纳米颗粒(类似于4.5和4.2分别纳米,)的EPDF随机取向的,并在这两个测量液氮和室温。加工电子衍射数据以获得随后与不同理想结构模型的PDF进行比较的EPDF。结果表明,PED-EPDF数据对不同的晶体结构敏感,例如单晶(截断的Octahedra)和乘以孪晶(Decahedra,Icosahedra)结构。结果表明,PED将残留物降低46%至29%;另外,PED和低温的组合进一步将残留物降低至23%,其与X射线PDF分析相当。此外,包含PED导致更好地估计来自EPDF的协调数量。据我们所知,以前未以预先应用于纳米粒子以通过EPDF方法进行分析的纳米颗粒技术(PED)。

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