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Laser-Induced Formation of Molecular Barriers in Porous Glass

机译:多孔玻璃中的激光诱导的分子屏障形成

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摘要

The possibility of creating physical barriers with various degrees of permeability in porous glass (PG) plates by local variation in the density of the porous structure of the matrix is demonstrated. The compaction of PG in the volume is provided by exposure to femtosecond laser pulses, while the surface impermeability of the compaction areas is provided by exposure to radiation of the CO2 laser. This approach to control the density of the PG structure makes it possible to create molecular barriers that represent a physical and/or chemical boundary for molecules located in a porous matrix (with controlled permeability). The discussed technology of the local porosity control opens the way to designing integral photon, fluid, and other types of devices based on PG plates.
机译:证明了通过局部变化在基质的多孔结构密度的局部变化的情况下产生具有各种渗透性的物理屏障的可能性。 通过暴露于飞秒激光脉冲,提供体积中的pG的压实,而通过暴露于CO2激光的辐射提供压实区域的表面不可渗透性。 这种控制PG结构的密度的方法使得可以产生代表位于多孔基质中的分子的物理和/或化学边界的分子屏障(具有受控渗透率)。 讨论的局部孔隙率控制的技术打开了基于PG板设计整体光子,流体和其他类型的装置的方式。

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