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Improved third-order optical nonlinearity and optical limiting behaviour of (nanospindle and nanosphere) zinc ferrite decorated reduced graphene oxide under continuous and ultrafast laser excitation

机译:改进的三阶光学非线性和光学限制性(纳米灯和纳米)的光学限制行为锌铁氧体在连续和超快激光激发下装饰了石墨烯氧化物的含量较低

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摘要

Nanohybrids consisting of uniform nanospheres and nanospindles of zinc ferrite attached to reduced graphene oxide were prepared by hydrothermal reaction. Zinc ferrite decorated reduced graphene oxide exhibited enhanced nonlinear absorption, refraction and optical limiting (OL) action under continuous wave (532 nm, 50 mW) and ultrafast (800 nm, 150 fs) excitation. The enhancement can possibly be attributed to the synergistic effect stemming from the observed reverse saturable absorption and self-defocusing in the material. The role of defects in improving the nonlinear optical (NLO) performance of ZnFe2O4-rGO was explained with the aid of Raman spectroscopy and ground state absorption studies. Using fs and cw excitation, the estimated nonlinear absorption coefficient [gamma(3PA(fs)) = 4.0 x 10(-12) m W-1, beta((cw)) = 6.5 x 10(-5) m W-1], nonlinear refractive index [n(2(fs)) = 4.2 x 10(-18) m(2) W-1, n(2(cw)) = 4.7 x 10(-12) m(2) W-1] and third order nonlinear optical (NLO) susceptibility [chi((3)) ((fs)) - 1.9 x 10(-15) esu, chi ((3)) ((cw)) - 4.2 x 10(-6) esu] of nanospindle ZnFe2O4-rGO were found to be higher than those of its other counter parts. The estimated NLO parameters were found to be higher than those of other known OL materials such as functionalized hydrogen exfoliated graphene, CdO. Thus zinc ferrite decorated rGO nanostructures with proficient NLO coefficients have potential scope for utilizing them as smart materials for OL applications.
机译:通过水热反应制备由附着于氧化石墨烯氧化物的均匀纳米球和纳米型铁素体组成的纳米组织。锌铁氧体装饰的石墨烯氧化物在连续波(532nm,50mw)和超快(800nm,150 fs)激发下表现出增强的非线性吸收,折射和光学限制(OL)作用。增强可能归因于源于观察到的反向可饱和吸收和材料中的自散焦的协同效应。借助于拉曼光谱和地态吸收研究,解释了缺陷在改善ZnFe2O4-Rgo的非线性光学(NLO)性能方面的作用。使用FS和CW激发,估计的非线性吸收系数γ(3Pa(FS))= 4.0×10(-12)M W-1,β((CW))= 6.5×10(-5)M W-1 ]非线性折射率[n(2(fs))= 4.2×10(-18)m(2)w-1,n(2(cw))= 4.7×10(-12)m(2)w- 1]和第三阶非线性光学(NLO)敏感性[CHI((3))((FS)) - 1.9×10(-15)ASU,CHI((3))((CW)) - 4.2×10( - 6)ESU]发现纳米汀ZnFe2O4-Rgo高于其其他柜台部分。发现估计的NLO参数高于其他已知的OL材料,例如官能化氢剥离石墨烯,CDO。因此,铁氧体装饰了RGO纳米结构,熟练的NLO系数具有潜在的范围,用于利用它们作为OL应用的智能材料。

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  • 来源
    《RSC Advances》 |2016年第94期|共10页
  • 作者单位

    Bharathidasan Univ Sch Phys Nanophoton Lab Tiruchchirappalli Tamil Nadu India;

    Bharathidasan Univ Sch Phys Nanophoton Lab Tiruchchirappalli Tamil Nadu India;

    VIT Chennai Sch Adv Sci Div Phys Madras 600127 Tamil Nadu India;

    Univ Hyderabad Adv Ctr Res High Energy Mat Hyderabad 500046 Telangana India;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
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