首页> 外文期刊>Photochemical & photobiological sciences: the official journal of the European Photochemistry Association and the European Society for Photobiology >Ethylenediamine-modified graphene oxide covalently functionalized with a tetracarboxylic Zn(II) phthalocyanine hybrid for enhanced nonlinear optical properties
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Ethylenediamine-modified graphene oxide covalently functionalized with a tetracarboxylic Zn(II) phthalocyanine hybrid for enhanced nonlinear optical properties

机译:乙二胺改性的氧化石墨烯与四羧酸锌(II)酞菁杂化物共价官能化,以增强非线性光学性能

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摘要

Tetracarboxylic Zn(II) phthalocyanine-amino functionalized graphene oxide (ZnPcC4-NGO) hybrid materials have been prepared by a covalent functionalization method. The characterizations indicate that the amino-functionalization of GO has an important influence on the structure and photophysical properties of the ZnPcC4-NGO hybrid. The ZnPcC4-NGO hybrid exhibits enhanced photo-induced electron transfer or energy transfer (PET/ET), compared to the ZnPcC4 covalent functionalized GO (ZnPcC4-GO), owing to the presence of the extended sp(2) carbon configurations, along with the partial reduction of the NGO nanosheets and the introduction of electron-donating ethylenediamine. The nonlinear optical (NLO) properties of the hybrids were investigated using the Z-scan technique at 532 nm with 4 ns laser pulses. The results show that the efficient covalent functionalization and partial reduction of NGO cause the ZnPcC4-NGO hybrid to possess evidently larger NLO properties than the individual NGO, ZnPcC4 and the ZnPcC4-GO hybrid. The enhanced NLO performance can be attributed to the increased excited state absorption from the extended sp(2) carbon configurations of the NGO moiety, reverse saturable absorption arising from ZnPcC4 moiety, and the contribution of the efficient PET/ET process between the ZnPcC4 and NGO moieties in the hybrid.
机译:已通过共价官能化方法制备了四羧酸Zn(II)酞菁-氨基官能化氧化石墨烯(ZnPcC4-NGO)杂化材料。表征表明,GO的氨基官能化对ZnPcC4-NGO杂种的结构和光物理性质具有重要影响。与ZnPcC4共价官能化的GO(ZnPcC4-GO)相比,ZnPcC4-NGO杂化物表现出增强的光诱导电子转移或能量转移(PET / ET),这归因于存在扩展的sp(2)碳构型以及NGO纳米片的部分还原以及给电子的乙二胺的引入。使用Z扫描技术在4 nm激光脉冲下于532 nm处研究了杂化体的非线性光学(NLO)特性。结果表明,NGO的有效共价官能化和部分还原使ZnPcC4-NGO杂种具有明显大于单个NGO,ZnPcC4和ZnPcC4-GO杂种的NLO性质。 NLO性能的提高可归因于NGO部分的扩展sp(2)碳构型增加的激发态吸收,ZnPcC4部分产生的反向饱和吸收以及ZnPcC4和NGO之间有效的PET / ET过程的贡献杂种中的部分。

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