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首页> 外文期刊>Nano letters >Three-dimensional morphology of iron oxide nanoparticles with reactive concave surfaces. A compressed sensing-electron tomography (CS-ET) approach
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Three-dimensional morphology of iron oxide nanoparticles with reactive concave surfaces. A compressed sensing-electron tomography (CS-ET) approach

机译:具有活性凹面的氧化铁纳米粒子的三维形态。压缩传感电子断层扫描(CS-ET)方法

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摘要

In this paper, we apply electron tomography (ET) to the study of the three-dimensional (3D) morphology of iron oxide nanoparticles (NPs) with reactive concave surfaces. The ability to determine quantitatively the volume and shape of the NP concavity is essential for understanding the key-lock mechanism responsible for the destabilization of gold nanocrystals within the iron oxide NP concavity. We show that quantitative ET is enhanced greatly by the application of compressed sensing (CS) techniques to the tomographic reconstruction. High-fidelity tomograms using a new CS-ET algorithm reveal with clarity the concavities of the particle and enable 3D nanometrology studies to be undertaken with confidence. In addition, the robust performance of the CS-ET algorithm with undersampled data should allow rapid progress with time-resolved 3D nanoscale studies, 3D atomic resolution imaging, and cryo-tomography of nanoscale cellular structures.
机译:在本文中,我们将电子断层扫描(ET)应用于具有反应性凹面的氧化铁纳米颗粒(NPs)的三维(3D)形态研究。定量确定NP凹度的体积和形状的能力对于理解负责氧化铁NP凹度中金纳米晶体失稳的键锁机制至关重要。我们表明,通过将压缩感知(CS)技术应用于断层摄影术重建,定量ET大大增强了。使用新的CS-ET算法的高保真断层图可以清楚地显示出颗粒的凹度,并可以自信地进行3D纳米计量学研究。此外,具有欠采样数据的CS-ET算法的强大性能应可在时间分辨的3D纳米级研究,3D原子分辨率成像和纳米级细胞结构的冷冻断层扫描技术上快速发展。

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