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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Third-order nonlinear optical response from polythiophene-based thin films
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Third-order nonlinear optical response from polythiophene-based thin films

机译:聚噻吩基薄膜的三阶非线性光学响应

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摘要

Optical quality films of the amphiphillic, regioregular polymer PTHPUDT were fabricated via the Langmuir-Blodgett technique, and their third-order nonlinear optical response was investigated using z-scan methods. Analysis of the resulting z-scan data yielded values of chi((3))(R) = - 1.2 x 10(-9) esu and chi((3))(I) - 3.5 x 10(-11) esu, consistent with previous studies on polythiophene-based polymers systems. However, even with relatively low intensities incident on pristine PTHPUDT polymer films, the required power to achieve a nonlinear response in the film is sufficient to produce photoinduced changes in the original polymer. These photoinduced changes are consistent with the onset of photooxidation, photobleaching, and chain scission processes. At higher incident intensities, prolonged exposure of the film results in the removal or partial removal of the polymer from the irradiated region. This leads to linear optical effects that manifest themselves as z-scan traces that show pronounced asymmetry and intensity-independent peak-to-valley transmittance. Although our observations pertain specifically to PTHPUDT, our results may extend to the broader class of polythiophene-based materials more generally. These observations put into question whether the nonlinear optical susceptibility values of polythiophene-based materials currently being reported in the literature result from pristine polymers or from their photoconverted products.
机译:通过Langmuir-Blodgett技术制备了两亲,规整聚合物PTHPUDT的光学质量薄膜,并使用z扫描方法研究了其三阶非线性光学响应。对产生的z扫描数据进行分析,得出chi((3))(R)=-1.2 x 10(-9)esu和chi((3))(I)-3.5 x 10(-11)esu,与以前对基于聚噻吩的聚合物体系的研究一致。但是,即使入射到原始PTHPUDT聚合物薄膜上的强度相对较低,在薄膜中实现非线性响应所需的功率也足以在原始聚合物中产生光诱导的变化。这些光诱导的变化与光氧化,光漂白和断链过程的发生是一致的。在较高的入射强度下,薄膜的长时间曝光导致聚合物从辐照区域去除或部分去除。这会导致线性光学效应,这些效应本身表现为z扫描轨迹,显示出明显的不对称性和与强度无关的峰谷透射率。尽管我们的观察结果专门针对PTHPUDT,但我们的结果可能更广泛地扩展到更广泛的基于聚噻吩的材料类别。这些观察结果使人们怀疑目前在文献中报道的基于聚噻吩的材料的非线性光学敏感性值是由原始聚合物还是由其光转化产物产生的。

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