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A Study of Homogeneous Nucleation of Ibuprofen in a Flow Chamber. Determination of the Surface Tension of Critical Nuclei

机译:布洛芬在流动室中的均相成核研究。临界核表面张力的测定

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Homogeneous nucleation of ibuprofen vapor is studied in a nucleation flow chamber, a horizontal quartz tube equipped with an external heater. The area of the chamber where the nucleation proceeds most efficiently is determined, and the volume of this area is estimated. The temperature and supersaturation are determined and the homogeneous nucleation rate is calculated for this area. Saturation vapor pressure over liquid ibuprofen is measured in a temperature range of 353-383 K. Using an exact formula that has recently been derived for the nucleation rate based on the works by Kusaka, Reiss, as well as the Frenkel liquid-kinetics theory, surface tension and the radius of surface of tension of a critical nucleus σ= 25.9 mN/m and Rs = 1.6 nm, respectively, are calculated at 318 K. The measurement of the surface tension of an ibuprofen planar sur- face shows that, at 318 K, σ ∞ = 24.38 mN/m; i.e., σ is higher than σ ∞ by 6%. A critical nucleus is established as containing nearly 36 ibuprofen molecules.
机译:布洛芬蒸气的均相成核是在成核流动室中进行的,成核室是装有外部加热器的水平石英管。确定腔室中成核最有效地进行的区域,并估计该区域的体积。确定该区域的温度和过饱和度,并计算均匀成核速率。在353-383 K的温度范围内测量液体布洛芬上的饱和蒸气压。使用最近根据库萨卡(Reiss)的工作以及弗伦克尔液体动力学理论得出的成核速率的精确公式,临界核的表面张力和表面张力半径分别在318 K下计算σ= 25.9 mN / m和Rs = 1.6 nm。布洛芬平面的表面张力测量结果表明, 318 K,σ∞= 24.38 mN / m;即σ比σ∞高6%。确定关键核包含近36个布洛芬分子。

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