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通过引入氧化石墨烯显著增强光聚合材料的偏振全息性能

Significant Enhancement of the Polarization Holographic Performance of Photopolymeric Materials by Introducing Graphene Oxide.

作者信息

Chen Yuxin, Hu Po, Huang Zhiyun, Wang Jinyu, Song Haiyang, Chen Xi, Lin Xiao, Wu Tianmin, Tan Xiaodi

机构信息

College of Photonic and Electronic Engineer, Fujian Normal University, Fuzhou 350117, China.

Information Photonics Research Center, Key Laboratory of Opto-Electronic Science and Technology for Medicine of Ministry of Education, Fujian Provincial Key Laboratory of Photonics Technology, Fujian Provincial Engineering Technology Research Center of Photoelectric Sensing Application, Fujian Normal University, Fuzhou 350117, China.

出版信息

ACS Appl Mater Interfaces. 2021 Jun 16;13(23):27500-27512. doi: 10.1021/acsami.1c07390. Epub 2021 Jun 7.

Abstract

Relying on various defects and functional oxygen-containing groups on the basal planes, graphene oxide (GO) is commonly unitized for intimate mixing with a polymer matrix to fabricate high-performance nanocomposite polymeric materials with the characteristics of graphene. Herein, by introducing GO nanosheets in a phenanthraquinone-doped polymethyl methacrylate (PQ/PMMA) photopolymer, we demonstrate that the polarization holographic diffraction efficiency of nanocomposite materials can be dramatically enhanced up to nearly 10 times and the photosensitivity can also be enhanced by more than 3 times. Experimental observations reveal that the incorporation of GO nanosheets serves as a polymerization initiator not only to promote the polymerization of MMA monomers and induce the drafting behavior of the PMMA polymer on its surface but also to effectively modulate the molecular weight of the PQ/PMMA photopolymer by adjusting the doping concentration of GO nanosheets. The current study, for the first time, demonstrates that the modulation of molecular weight for PQ/PMMA photopolymers here exerts a significant impact on their holography performance. In addition, due to the strong physisorption of PQ photosensitizers onto GO nanosheets, the aggregation of PQ around GO-graft-PMMA also facilitates the formation of GO-graft-PMMA/PQ and is beneficial to the enhancement of holographic performance. The emergence of GO-graft-PMMA/PQ nanocomposite materials here is expected to fulfill the requirement of high-performance polarization-sensitive materials in the field of polarization holographic data storage and provide a facile but effective nanocomposite doping strategy to modulate the holographic performance of photopolymers from micro- and mesoscopic levels.

摘要

氧化石墨烯(GO)依靠其基面的各种缺陷和功能性含氧基团,通常被用于与聚合物基体紧密混合,以制备具有石墨烯特性的高性能纳米复合聚合物材料。在此,通过在菲醌掺杂的聚甲基丙烯酸甲酯(PQ/PMMA)光聚合物中引入氧化石墨烯纳米片,我们证明了纳米复合材料的偏振全息衍射效率可显著提高近10倍,光敏性也可提高3倍以上。实验观察表明,氧化石墨烯纳米片的加入不仅作为聚合引发剂促进甲基丙烯酸甲酯单体的聚合,并诱导聚甲基丙烯酸甲酯聚合物在其表面的拉伸行为,还通过调节氧化石墨烯纳米片的掺杂浓度有效地调节PQ/PMMA光聚合物的分子量。本研究首次表明,此处对PQ/PMMA光聚合物分子量的调节对其全息性能有显著影响。此外,由于PQ光敏剂在氧化石墨烯纳米片上的强物理吸附,PQ在氧化石墨烯接枝聚甲基丙烯酸甲酯周围的聚集也促进了氧化石墨烯接枝聚甲基丙烯酸甲酯/PQ的形成,有利于全息性能的提高。此处氧化石墨烯接枝聚甲基丙烯酸甲酯/PQ纳米复合材料的出现有望满足偏振全息数据存储领域对高性能偏振敏感材料的需求,并提供一种简便而有效的纳米复合掺杂策略,从微观和介观层面调节光聚合物的全息性能。

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