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首页> 外文期刊>Chemical Physics Letters >REAL-TIME MEASUREMENT OF RESIDENCE TIMES OF GAS MOLECULES ON SOLID SURFACES
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REAL-TIME MEASUREMENT OF RESIDENCE TIMES OF GAS MOLECULES ON SOLID SURFACES

机译:固体表面上气体分子残留时间的实时测量

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摘要

A new technique for measuring the surface residence times of gases under molecular flow conditions is described. A pulse of molecules is passed through a cylindrical tube where the molecules undergo multiple collisions with the wall. The transit time, measured using a mass spectrometer, is governed by gas kinetic theory and the magnitude of the gas-surface interaction per collision or surface residence time. Monte Carlo trajectory calculations of molecules diffusing across the tube were in excellent agreement with experimental results on non-interacting gases. Potentially sticky gases, such as H2O, HCl and NO2, as well as a number of ideal gases were investigated on three materials commonly used in Vacuum science: pyrex glass, stainless steel and teflon. No deviation from ideal gas behaviour was observed for H2O, HCl and NO2 on teflon whereas we had to invoke a two-site adsorption model for both H2O and HCl interacting with pyrex and stainless steel. (C) 1997 Elsevier Science B.V. [References: 14]
机译:描述了一种在分子流条件下测量气体表面停留时间的新技术。分子脉冲穿过圆柱管,在圆柱管中分子与壁发生多次碰撞。使用质谱仪测量的渡越时间受气体动力学理论和每次碰撞或表面停留时间的气-面相互作用大小的控制。跨管扩散分子的蒙特卡洛轨迹计算与非相互作用气体的实验结果非常吻合。在真空科学中常用的三种材料(派热克斯玻璃,不锈钢和特氟隆)上研究了潜在的粘性气体(例如H2O,HCl和NO2)以及多种理想气体。聚四氟乙烯上的H2O,HCl和NO2没有观察到与理想气体行为的偏差,而我们必须调用H2O和HCl与派热克斯和不锈钢相互作用的两点吸附模型。 (C)1997 Elsevier Science B.V. [参考:14]

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