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Observation of a solid phase under measuring the He-3 diffusion coefficient in the nanopores of the MCM-41 adsorbent

机译:在测量MCM-41吸附剂纳米孔中He-3扩散系数时观察固相

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摘要

Using nuclear magnetic resonance, the stimulated spin-echo method was applied to measure the diffusion coefficient in a He-3 monolayer adsorbed inside cylindrical pores (channel diameter 25 ANGS;) of a new-generation nanostructured adsorbent MCM-41. Helium was let into the sample in small portions, which made it possible to change in a controlled way the coverage of the walls of the cavities in the adsorbent. It is found that the measured dependence of the stimulated spin-echo amplitude on the square of the magnetic field gradient is exponential. The nature of this dependence made it possible to determine the diffusion coefficient in the adsorbed monolayer. The value of this coefficient turned out to be close to the diffusion coefficient in solid helium, which indicates that the first He-3 monolayer on the inner surface of the cylindrical cavity is solid. This conclusion was confirmed when calculating the pressure acting on the helium monolayer due to the van der Waals forces from the adsorbent substance. Published under an exclusive license by AIP Publishing.
机译:使用核磁共振,刺激旋转回声法应用于测量在他单层扩散系数吸附在圆柱形孔(通道直径25 & ang;)的新一代纳米吸附剂MCM-41。样本的一小部分,这使它可能改变控制方式覆盖的墙壁的蛀牙吸附剂。依赖刺激的旋转回声振幅在广场上的磁场梯度指数。确定扩散成为可能在吸附单层系数。这个系数是接近的固态氦的扩散系数表明,第一他单层的圆柱形谐振腔的内表面是固体。这个结论是在计算确认压力作用于氦单层吸附剂的范德瓦尔斯力物质。每年出版。

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