首页> 外文会议>Photonic fiber and crystal devices: advances in materials and innovations in device applications IX >Polymer-inorganic nanocomposite thin film emitters, optoelectronic chemical sensors, and energy harvesters produced by multiple-beam pulsed laser deposition
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Polymer-inorganic nanocomposite thin film emitters, optoelectronic chemical sensors, and energy harvesters produced by multiple-beam pulsed laser deposition

机译:聚合物-无机纳米复合薄膜发射器,光电化学传感器和通过多束脉冲激光沉积制备的能量收集器

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Large class of new photonic devices, including light emitters, chemical sensors, and energy harvesters, can be made of the polymer-inorganic nanocomposite thin films produced by the new multiple-beam pulsed laser deposition process (MB-PLD). We describe the PLD system and the film deposition process itself, particularly the multiple-beam matrix assisted pulsed laser evaporation (MB-MAPLE) version with laser beam scanning and plume direction control. We also report on the results of the investigation of optical and performance characteristics of three types of the fabricated nanocomposite thin film devices: upconversion light emitters, chemical (ammonia) sensors, and thermoelectric energy harvesters. The emitters were made of poly(methyl methacrylate) (PMMA) film impregnated with the nanoparticles of rare-earth (RE) fluorides such as NaYF_4: Yb~(3+), Er~(3+) and NaYF_4: Yb~(3+), Ho~(3+). They demonstrated bright upconversion emission in visible region being pumped with a 980-nm infra-red laser. The same films, but doped with an indicator dye, were tested as ammonia sensors. They demonstrated the drop of upconversion emission (registered by a photodetector) due to the rise of the optical absorption of the indicator dye affected by ammonia. The capability of detecting fractions of one percent (molar) of ammonia was established. The thermoelectric energy harvesters were made of nanocomposite films of aluminum-doped zinc oxide (AZO) impregnated with polymer nanoparticles. The role of the nanoparticles was to reduce the thermoconductivity and increase electroconductivity thus contributing to the improvement of the thermoelectric figure-of-merit ZT.
机译:新型的光子器件,包括光发射器,化学传感器和能量收集器,可以由新的多束脉冲激光沉积工艺(MB-PLD)生产的聚合物-无机纳米复合薄膜制成。我们描述了PLD系统和膜沉积过程本身,特别是带有激光束扫描和羽流方向控制的多束矩阵辅助脉冲激光蒸发(MB-MAPLE)版本。我们还报告了三种类型的纳米复合薄膜器件的光学和性能特性研究的结果:上转换光发射器,化学(氨)传感器和热电能量收集器。发射极由浸渍有稀土(RE)氟化物纳米粒子如NaYF_4:Yb〜(3 +),Er〜(3+)和NaYF_4:Yb〜(3)的聚甲基丙烯酸甲酯(PMMA)膜制成。 +),Ho〜(3+)。他们证明了在可见光区域中被980 nm红外激光泵浦的明亮的向上转换发射。测试了相同的膜,但掺有指示剂染料,用作氨传感器。他们证明了由于受氨影响的指示染料的光吸收增加,上转换发射(由光电探测器记录)的下降。建立了检测百分之一(摩尔)的氨的能力。热电能量收集器由浸渍有聚合物纳米颗粒的铝掺杂氧化锌(AZO)的纳米复合膜制成。纳米粒子的作用是降低热导率并增加电导率,从而有助于改善热电品质因数ZT。

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