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Zeolite LTA nanoparticles prepared by laser-induced fracture of zeolite microcrystals

机译:激光诱导沸石微晶断裂制备的沸石LTA纳米粒子

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摘要

Zeolite LTA nanoparticles are prepared by laser-induced fragmentation of zeolite LTA microparticles using a pulsed laser. Zeolite nanoparticle formation is attributed to absorption of the laser at impurities or defects within the zeolite microcrystal generating thermoelastic stress that mechanically fractures the microparticle into smaller nanoparticle fragments. Experimentally, it is found that nanoparticles have a wide size and morphology distribution. Large nanoparticles (> 200 nm) are typically irregularly shaped crystals of zeolite LTA, whereas small nanoparticles (< 50 nm) tend to be spherical, dense, and amorphous, indicative of destruction of the original LTA crystal structure. Results of the fragmentation versus laser parameters show that shorter laser wavelengths are more efficient at producing zeolite nanoparticles, which is explained based on a larger cross section for optical absorption in the zeolite crystal. Increasing the laser energy density irradiating the sample was found to be a trade-off between increasing the amount of fragmentation and increasing the amount of structural damage to the zeolite crystal. It is suggested that in the presence of strongly absorbing defects, plasma formation is induced resulting in dramatically higher temperatures. On the basis of these results it is suggested the optimal laser processing conditions are 355 nm and 10 mJ/pulse laser energy for our LTA samples.
机译:通过使用脉冲激光通过激光诱导的沸石LTA微粒的破碎来制备沸石LTA纳米颗粒。沸石纳米颗粒的形成归因于激光在沸石微晶体内的杂质或缺陷处的吸收,从而产生热弹应力,从而将微粒机械破碎成较小的纳米颗粒碎片。通过实验,发现纳米颗粒具有宽的尺寸和形态分布。大的纳米颗粒(> 200 nm)通常​​是沸石LTA的不规则形状的晶体,而小的纳米颗粒(<50 nm)则倾向于球形,致密和无定形,表明原始LTA晶体结构被破坏。碎裂与激光参数的结果表明,较短的激光波长在生产沸石纳米颗粒方面更有效,这是基于沸石晶体中较大的光吸收截面来解释的。发现增加照射样品的激光能量密度是在增加碎裂量和增加对沸石晶体的结构破坏量之间的权衡。建议在存在强烈吸收缺陷的情况下,引起等离子体形成,从而导致温度明显升高。根据这些结果,建议对于我们的LTA样品,最佳激光加工条件是355 nm和10 mJ /脉冲激光能量。

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