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首页> 外文期刊>The Journal of the Acoustical Society of America >Surface acoustic wave investigation of magnetic nanoparticle size and concentration effect on liquid crystal behavior
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Surface acoustic wave investigation of magnetic nanoparticle size and concentration effect on liquid crystal behavior

机译:表面声波研究磁性纳米粒径和浓度对液晶行为的影响

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摘要

The effect of spherical magnetic nanoparticles with different size (5, 10, 15, and 20 nm) and volume concentration (10−3, 5 × 10−4, and 10−4) on liquid crystal 4-cyano-4′-hexylbiphenyl (6CB) behavior was investigated using surface acoustic wave (SAW). The attenuation response of SAW propagating along with the substrate/liquid crystal interface was used to study the structural changes induced by an applied magnetic field. The obtained results showed the shift of the threshold magnetic field with an increase in the volume concentration of nanoparticles toward lower fields and also the decrease in the isotropic-nematic phase transition temperature depending on the nanoparticle size and the nanoparticle volume fraction. Results confirmed again that the bulk viscosity coefficients should dominate the SAW attenuation and that the SAW investigation in the presented configuration is applicable to monitoring of the role of magnetic dopants in structural changes under external fields. Some theoretical background of the presented SAW investigation is introduced as well. Obtained results are discussed within the context of previous ones.
机译:采用表面声波(SAW)研究了不同尺寸(5、10、15和20 nm)和体积浓度(10−3、5×10−4和10−4)的球形磁性纳米颗粒对液晶4-氰基-4′-己基联苯(6CB)行为的影响。利用SAW随衬底/液晶界面传播的衰减响应,研究了外加磁场引起的结构变化。结果表明,随着纳米颗粒体积浓度的增加,阈值磁场向低磁场偏移,各向同性-向列相变温度也随纳米粒径和纳米颗粒体积分数的降低而降低。结果再次证实,体粘度系数应主导SAW衰减,并且所提出的结构中的SAW研究适用于监测磁掺杂剂在外场结构变化中的作用。此外,还介绍了所提出的SAW调查的一些理论背景。获得的结果将在先前结果的背景下进行讨论。

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