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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Ag nanoparticle/azopolymer nanocomposites: In situ synthesis, microstructure, rewritable optically induced birefringence and optical recording
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Ag nanoparticle/azopolymer nanocomposites: In situ synthesis, microstructure, rewritable optically induced birefringence and optical recording

机译:银纳米颗粒/偶氮聚合物纳米复合材料:原位合成,微观结构,可重写的光致双折射和光学记录

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Ag nanoparticle/azopolymer nanocomposites are prepared with controlled concentration of Ag nanoparticles by in situ reduction of Ag(I) beta-diketone complexes in an azopolymer matrix. The nanocomposites form an organic-inorganic network-like structure by interactions between the azopolymer matrix and the Ag nanoparticles. The Ag/azopolymer nanocomposites are homogeneous and highly transparent even when the content of Ag is as high as 56 wt% Birefringence of the azopolymer without Ag and the nanocomposites can be optically induced and erased However, after 5 cycles of optically writing-erasing processes, 97% decrease of the birefringence is observed for the azopolymer film without Ag and only 29% decrease of the birefringence is observed for the nanocomposite film with 5 6 wt% Ag, showing the stability of photo-induced birefringence of the nanocomposite is improved by introducing Ag nanoparticles into the azopolymer matrix Relatively high concentration of Ag nanoparticles does not strongly hinder the mobility of azobenzene groups during photoisomerization and one-photon recording In two-photon optical recording experiments, an image on the nanocomposite with 5.6 wt% Ag can be observed with writing power as low as 6 mW and no such an image can be observed in the azopolymer without Ag under the same two-photon recording condition.
机译:通过在偶氮聚合物基质中原位还原Ag(I)β-二酮络合物,以受控浓度的Ag纳米颗粒制备Ag纳米颗粒/偶氮聚合物纳米复合材料。纳米复合材料通过偶氮聚合物基质和Ag纳米颗粒之间的相互作用形成有机-无机网络状结构。即使Ag的含量高达56 wt%,Ag /偶氮聚合物纳米复合材料仍是均匀且高度透明的,而没有Ag的偶氮聚合物的双折射也可以被光诱导和擦除,但是经过5次光学写擦除过程后,对于没有Ag的偶氮聚合物膜,观察到双折射降低了97%,对于具有5 6 wt%的Ag的纳米复合膜,仅观察到了29%的双折射,这表明通过引入纳米复合材料,光诱导的双折射的稳定性得到了改善。将银纳米颗粒放入偶氮聚合物基质中相对高浓度的银纳米颗粒不会强烈阻碍光异构化和单光子记录过程中偶氮苯基团的迁移。在两光子光学记录实验中,可以观察到5.6 wt%Ag的纳米复合材料上的图像。写入功率低至6 mW,并且在相同的2 ph下在没有Ag的偶氮聚合物中无法观察到此类图像录音条件。

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