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基于含偶氮苯液晶混合物渗透多孔聚丙烯的光致变色复合材料用于随机激光。

Photochromic Composite for Random Lasing Based on Porous Polypropylene Infiltrated with Azobenzene-Containing Liquid Crystalline Mixture.

机构信息

Technical University of Applied Sciences Wildau , Hochschulring 1, 15745 Wildau, Germany.

Fraunhofer Institute for Applied Polymer Research , Geiselbergstr. 69, 14476 Potsdam-Golm, Germany.

出版信息

ACS Appl Mater Interfaces. 2015 Dec 9;7(48):26595-602. doi: 10.1021/acsami.5b08032. Epub 2015 Nov 24.

Abstract

We report on a new low-cost and easily fabricated type of liquid crystalline polymer composites demonstrating low threshold random lasing, which can be used as a cheap and simple mirror-less laser source. The composite is based on mass-producible commercially available porous polypropylene (Celgard 2500) infiltrated with low-molar-mass liquid crystal material doped with Rhodamine 800 laser dye. Excitation with red nanosecond laser (630 nm) induces random lasing with the emission peak in NIR spectral range (804 nm) with noticeable degree of linear polarization. The possibility to control the lasing threshold and polarization of the output light with UV radiation through photoswitching of liquid crystal phase from nematic to isotropic is demonstrated. The photocontrollable phase switching is achieved by reversible E/Z isomerization of the azobenzene dopant introduced to the nematic host matrix. It is revealed that the isotropic state of liquid crystal provides more efficient random lasing with lower threshold due to significant scattering of the ordinary wave.

摘要

我们报告了一种新型的低成本、易于制造的液晶聚合物复合材料,该复合材料具有低阈值随机激光特性,可用作廉价且简单的无镜激光光源。该复合材料基于可大规模生产的市售多孔聚丙烯(Celgard 2500),其中填充了掺杂有若丹明 800 激光染料的低摩尔质量液晶材料。用红色纳秒激光(630nm)激发会产生近红外光谱范围(804nm)的随机激光,并且具有明显的线偏振度。通过将液晶相从向列相到各向同性相的光致异构化进行光控,证明了可以用光来控制激光阈值和输出光的偏振。通过引入到向列主链中的偶氮苯掺杂剂的可逆 E/Z 互变异构来实现光控的相转换。结果表明,由于寻常波的显著散射,各向同性态的液晶提供了更有效的随机激光,其阈值更低。

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