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An Experimental Study of Homogeneous Nucleation of Supersaturated Antimony Vapor: Determination of the Surface Tension of a Critical Nucleus

机译:超饱和锑蒸气均匀成核的实验研究:临界核的表面张力测定

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摘要

Homogeneous nucleation of supersaturated antimony vapor has been studied in a laminar-flow chamber with the use of transmission electron microscopy, diffusion spectrometer of aerosols, supersaturation cutoff, laser light scattering, and other methods. Surface tension sigma(s) of a critical nucleus and radius R-s of its surface of tension have been determined from the experimentally measured temperature field by numerical simulation of the processes occurring in the chamber. The calculation results are in good agreement with the measured profile of a deposit on chamber walls, the average size and concentration of formed aggregates, the average size of primary particles, and their number in an aggregate. Equivalent volume V-eq = 0.87 cm(3) of the zone of intense nucleation, average nucleation rate I = 5 x 10(10) cm(-3) s(-1), average supersaturation S-4 = 3.2 x 10(6), average temperature T = 421 K in this zone, and radius R-s = 0.63 nm and surface tension sigma(s) = 220 mN/m of critical nuclei formed in this zone have been calculated. The surface tension of antimony nuclei has appeared to be lower than the surface tension of its planar surface by 46%. In our previous works, it was found that the surface tension of critical bismuth nuclei was, on the contrary, markedly higher than that of its planar surface. Different signs of the deviation from the surface tension of a planar surface have, for the first time, been observed for elements of the same group.
机译:通过使用透射电子显微镜,气溶胶,过饱和截止,激光散射等方法的扩散光谱仪研究了均匀成核。通过在腔室中发生的工艺的数值模拟,通过实验测量的温度场确定其张力表面的关键核和半径R-S的表面张力σ。计算结果与腔室壁上的沉积物的测量曲线,形成的聚集体的平均尺寸和浓度,初级颗粒的平均尺寸及其在骨料中的数量之间良好。等效体积V-eq = 0.87 cm(3)强核细胞区域,平均成核速率I = 5×10(10)cm(-3)s(-1),平均过饱和S-4 = 3.2 x 10( 6),该区域的平均温度T = 421 k,并且已经计算了该区域中形成的临界核的半径Rs = 0.63nm和表面张力σ= 220mN / m。锑核的表面张力似乎低于其平面表面的表面张力46%。在我们以前的作品中,发现关键铋核的表面张力相反,显着高于其平面表面。从第一次观察到来自平面表面的表面张力的偏差的不同迹象已被观察到同一组的元件。

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  • 来源
    《Colloid journal》 |2019年第4期|共18页
  • 作者单位

    Russian Acad Sci Voevodskii Inst Chem Kinet &

    Combust Siberian Branch Novosibirsk 630090 Russia;

    Russian Acad Sci Voevodskii Inst Chem Kinet &

    Combust Siberian Branch Novosibirsk 630090 Russia;

    Russian Acad Sci Voevodskii Inst Chem Kinet &

    Combust Siberian Branch Novosibirsk 630090 Russia;

    Russian Acad Sci Voevodskii Inst Chem Kinet &

    Combust Siberian Branch Novosibirsk 630090 Russia;

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  • 正文语种 eng
  • 中图分类 胶体;
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