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Enhanced magnetic-field-induced optical properties of nanostructured magnetic fluids by doping nematic liquid crystals

机译:通过掺杂向列液晶增强磁场诱导的纳米结构磁流体的光学性质

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摘要

Ferronematic materials composed of 4-cyano-4′-pentylbiphenyl nematic liquid crystal and oil-based Fe3O4 magnetic fluid were prepared using ultrasonic agitation. The birefringence (Δn) and figure of merit of optical properties (Q = Δn/α, where α is the extinction coefficient) of pure magnetic fluids and the as-prepared ferronematic materials were examined and compared. The figure of merit of optical properties weighs the birefringence and extinction of the materials and is more appropriate to evaluate their optical properties. Similar magnetic-field- and magnetic-particle-concentration-dependent properties of birefringence and figure of merit of optical properties were obtained for the pure magnetic fluids and the ferronematic materials. For the ferronematic materials, the values of Q increase with the volume fractions of nematic liquid crystal under certain fixed field strength and are larger than those of their corresponding pure magnetic fluids at high field region. In addition, the enhancement of Q value increases monotonously with the magnetic field and becomes remarkable when the applied magnetic field is beyond 50 mT. The maximum relative enhanced value of QR exceeds 6.8% in our experiments. The results of this work may conduce to extend the pragmatic applications of nanostructured magnetic fluids in optical field.
机译:采用超声搅拌法制备了由4-氰基-4'-戊基联苯向列液晶和油基Fe3O4磁性流体组成的铁系材料。检查并比较了纯磁性流体与制备的亚铁系材料的双折射(Δn)和光学性质的优值(Q =Δnn/α,其中α为消光系数)。光学性能的优值衡量了材料的双折射和消光性能,更适合评估其光学性能。对于纯磁性流体和亚铁材料,获得了类似的磁场和磁性粒子浓度相关的双折射特性和光学特性优值。对于铁质材料,在一定的固定场强下,Q值随向列液晶的体积分数而增加,并且在高场区大于其相应的纯磁流体的Q值。另外,Q值的增加随磁场单调增加,并且当施加的磁场超过50mT时变得显着。在我们的实验中,QR的最大相对增强值超过6.8%。这项工作的结果可能有助于扩大纳米结构磁性流体在光学领域的实际应用。

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