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首页> 外文期刊>Journal of Applied Physics >Monitoring simultaneously the growth of nanoparticles and aggregates by in situ ultra-small-angle x-ray scattering
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Monitoring simultaneously the growth of nanoparticles and aggregates by in situ ultra-small-angle x-ray scattering

机译:通过原位超小角度X射线散射同时监控纳米颗粒和聚集体的生长

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Ultra-small-angle x-ray scattering can provide information about primary particles and aggregates from a single scattering experiment. This technique is applied in situ to flame aerosol reactors for monitoring simultaneously the primary particle and aggregate growth dynamics of oxide nanoparticles in a flame. This was enabled through the use of a third generation synchrotron source (Advanced Photon Source, Argonne IL, USA) using specialized scattering instrumentation at the UNICAT facility which is capable of simultaneously measuring nanoscales to microscales (1 nm to 1 μm). More specifically, the evolution of primary-particle diameter, mass-fractal dimension, geometric standard deviation, silica volume fraction, number concentration, radius of gyration of the aggregate, and number of primary particles per aggregate are measured along the flame axis for two different premixed flames. All these particle characteristics were derived from a single and nonintrusive measurement technique. Flame temperature profiles were measured in the presence of particles by in situ Fourier transform infrared spectroscopy and thermophoretic sampling was used to visualize particle growth with height above the burner as well as in the radial direction.
机译:超小角度X射线散射可以提供有关单个散射实验中的初级粒子和聚集体的信息。该技术原位应用于火焰气溶胶反应器,以同时监测火焰中氧化物纳米颗粒的初级粒子和聚集体生长动力学。这是通过在UNICAT设施中使用专门的散射仪器使用第三代同步加速器源(先进光子源,美国阿贡州伊利诺伊州,美国)而实现的,该同步散射源能够同时测量纳米级至微米级(1 nm至1μm)。更具体地,沿着两个不同的火焰轴,沿火焰轴测量一次粒径,质量分数尺寸,几何标准偏差,二氧化硅体积分数,数量浓度,团聚体的回转半径以及每个团聚体的一次颗粒数量的演变。预混火焰。所有这些粒子特性均来自一种非侵入式的测量技术。通过原位傅立叶变换红外光谱法在存在颗粒的情况下测量火焰温度曲线,并使用热泳采样法观察燃烧器上方和径向高度的颗粒生长情况。

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