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首页> 外文期刊>Journal of nanoparticle research: An interdisciplinary forum for nanoscale science and technology >Classification performance of a low pressure differential mobility analyzer for nanometer-sized particles
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Classification performance of a low pressure differential mobility analyzer for nanometer-sized particles

机译:低压差迁移率分析仪对纳米级颗粒的分类性能

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Size distribution measurements and classification tests by a low pressure differential mobility analyzer (LPDMA) for nanometer-sized silver particles and cesium iodide particles under low pressure conditions (123-300 Torr) were performed using a transmission electron microscope (TEM) and the tandem DMA technique. When the ratio of the sheath gas flow rate and the aerosol gas flow rate was set at 5:1, the targeted sizes calculated from the classification voltage applied to the LPDMA at 160 Torr are found to be in good correlation with the count mean Feret diameter obtained from the TEM observation of the particles collected after a classification ranging from 6 to 25 nm, although the targeted sizes set by the LPDMA were approximately 15% greater than the count mean Feret diameter measured by the TEM after classification. The geometric standard deviations of DMA-classified particles measured by TEM and those obtained from the tandem DMA method ranged from 1.08 to 1.17 and from 1.05 to 1.13, respectively. They were slightly greater than the ideal geometric standard deviations (1.05) of the particles classified with the LPDMA, which was calculated by neglecting the broadening effects due to Brownian diffusion. We experimentally demonstrated the validity of our LPDMA system for size measurements and classification of the nanometer-sized particles under low pressure conditions.
机译:使用透射电子显微镜(TEM)和串联DMA通过低压差迁移率分析仪(LPDMA)在低压条件下(123-300 Torr)对纳米尺寸的银颗粒和碘化铯颗粒进行尺寸分布测量和分类测试技术。当鞘气流量与气溶胶流量的比例设置为5:1时,发现从在160 Torr下施加到LPDMA的分类电压计算出的目标尺寸与计数平均费雷特直径具有良好的相关性从TEM观察中可以看到,在分级范围为6到25 nm的分级之后收集的颗粒,尽管LPDMA设定的目标尺寸比分级后TEM测得的平均费雷特直径大约15%。通过TEM测量的和通过串联DMA方法获得的DMA分类颗粒的几何标准偏差分别为1.08至1.17和1.05至1.13。它们略大于用LPDMA分类的粒子的理想几何标准差(1.05),该值是通过忽略布朗扩散引起的加宽效应来计算的。我们通过实验证明了LPDMA系统在低压条件下进行尺寸测量和纳米级颗粒分类的有效性。

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