首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >The third order nonlinear optical properties of graphene oxide-zinc (II) naphthalocyanine hybrids and amino graphene oxide-zinc (II) naphthalocyanine hybrids
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The third order nonlinear optical properties of graphene oxide-zinc (II) naphthalocyanine hybrids and amino graphene oxide-zinc (II) naphthalocyanine hybrids

机译:石墨烯氧化锌(II)萘酞菁氧化锌(II)萘酞菁杂交物的三阶非线性光学性质

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Novel tetracarboxylic zinc naphthalocyanine-graphene oxide (ZnNcC(4)-GO) and tetracarboxylic zinc naphthalocyanine-amino graphene oxide (ZnNcC(4)-NGO) hybrids have been prepared with a covalent functionalization method. A series of characterizations have been used to prove the structures of ZnNcC(4)-GO and ZnNcC(4)-NGO hybrids. The third order nonlinear optical properties were investigated using the Z-scan technique at 532 nm with 4 ns laser pulses. Either ZnNcC(4)-GO or ZnNcC(4)-NGO exhibited much larger nonlinear optical absorption coefficients than GO and ZnNcC(4) as a result of the covalent link between GO and ZnNcC(4). ZnNcC(4)-NGO hybrids perform the enhanced NLO properties than ZnNcC(4)-GO, attributed to the increased excited state absorption from the extended sp(2) carbon configurations of the NGO moiety in ZnNcC(4)-NGO hybrids along with the partial reduction of NGO nanosheets, and the stronger PET/ET process between NGO and ZnNcC(4). Moreover, the Z-scan curve of ZnNcC(4)-NGO shows a deeper RSA valley and the larger beta value compared to that of ZnPcC4-NGO because the pi-conjugated system of ZnNcC(4) is larger relative to that of ZnPcC4. (c) 2019 Elsevier Ltd. All rights reserved.
机译:用共价官能化方法制备了新型四羧酸氧化锌 - 石墨烯氧化物(ZnNCC(4)-Go)和四羧酸锌萘胺 - 氨基氧化物(ZnNCC(4)-1go)杂种。已经使用了一系列特征来证明ZnNCC(4)-Go和ZnNCC(4)-NGO杂种的结构。使用具有4nS激光脉冲的532nm处的Z扫描技术研究了三阶非线性光学性质。 ZnNCC(4)-GO或ZnNCC(4)-NGO由于GO和ZnNCC(4)之间的共价连杆而表现出比Go和ZnNCC(4)更大的非线性光学吸收系数。 ZnNCC(4)-NGO杂种比ZnNCC(4)-go进行增强的NLO性质,归因于来自ZnNCC(4)-NGO杂种的NGO部分的延长SP(2)碳配置增加的激发态吸收。非政府组织纳米片的部分减少,以及非政府组织和ZnNCC(4)之间的更强的PET / ET过程。此外,与ZNPCC4-NGO相比,ZnNCC(4)-NGO的Z扫描曲线显示了更深的RSA谷和较大的β值,因为ZnPCC4-NGO相对于ZnPcc4的PI-缀合系统较大。 (c)2019年elestvier有限公司保留所有权利。

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