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Enhanced nonlinear optical absorption and optical limiting properties of superparamagnetic spinel zinc ferrite decorated reduced graphene oxide nanostructures

机译:超顺磁性尖晶石铁氧体锌修饰的氧化石墨烯纳米结构的增强的非线性光学吸收和光学极限性质

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Nonlinear absorption and optical limiting properties of ZnFe2O4-rGO magnetic nanostructures was investigated by the Z-scan technique using Q-switched Nd:YAG laser (5 ns, 532 nm, 10 Hz) as an excitation source. Excited state absorption was the dominant process responsible for the observed nonlinearity in ZnFe2O4 decorated rGO which arises due to photo-generated charge carriers in the conduction band of zinc ferrite and increases in defects at the surface of rGO due to the incorporation of ZnFe2O4. The magnitude of the nonlinear absorption co-efficient was found to be in the order of 10(-10) m/W. A noteworthy enhancement in the third-order NLO properties in ZnFe2O4-(15 wt%) rGO with those of individual counter parts and well known graphene composites was reported. Role of induced defects states (spa) arising from the functionalization of rGO in the enhancement of NLO response was explained through Raman studies. Earlier incorporation and distribution of ZnFe2O4 upon GO through one-step hydrothermal method was analyzed by XRD and FTIR. Formation of (nanospheresanospindles) ZnFe2O4 along with reduction of graphene oxide was confirmed through TEM analysis. VSM studies showed zinc ferrite decorated rGO posseses superparamagnetic behavior. The tuning of nonlinear optical and magnetic behavior with variation in the content of spinel ferrites upon reduced graphene oxide provides an easy way to attain tunable properties which are exceedingly required in both optoelectronics and photothermal therapy applications. (C) 2016 Elsevier B.V. All rights reserved.
机译:ZnFe2O4-rGO磁性纳米结构的非线性吸收和光限制特性通过Z扫描技术研究,使用Q开关Nd:YAG激光器(5 ns,532 nm,10 Hz)作为激发源。激发态吸收是导致ZnFe2O4装饰的rGO中观察到的非线性的主要过程,该非线性是由于铁氧体锌导带中的光生电荷载流子引起的,并且由于掺入了ZnFe2O4而使rGO表面的缺陷增加。发现非线性吸收系数的量级为10(-10)m / W。据报道,ZnFe2O4-(15 wt%)rGO中的三阶NLO性质与单独的对应零件和众所周知的石墨烯复合材料相比均有明显提高。通过拉曼研究解释了rGO功能化引起的诱导缺陷状态(spa)在增强NLO反应中的作用。用XRD和FTIR分析了一步法水热法在GO上ZnFe2O4的早期掺入和分布。通过TEM分析确认了(纳米球/纳米锭)ZnFe 2 O 4的形成以及氧化石墨烯的还原。 VSM研究表明,铁氧体锌装饰的rGO具有超顺磁性行为。在还原的氧化石墨烯上,随着尖晶石铁氧体含量的变化而对非线性光学和磁性行为进行调谐,提供了一种获得可调谐特性的简便方法,这在光电子和光热疗法应用中都非常需要。 (C)2016 Elsevier B.V.保留所有权利。

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