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Heavy-Metal-Free Flexible Hybrid Polymer-Nanocrystal Photodetectors Sensitive to 1.5 μm Wavelength

机译:无金属的柔性杂化聚合物 - 纳米晶体光电探测器敏感至1.5μm波长

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Photodetection in the short-wave infrared (SWIR) wavelength window represents one of the core technologies allowing for many applications. Most current photodetectors suffer from high cost due to the epitaxial growth requirements and the ecological issue due to the use of highly toxic heavy-metal elements. Toward alternative SWIR photodetection strategies, in this work, high-performance heavy-metal-free flexible photodetectors sensitive to λ = 1.5 μm photons are presented based on the formation of a solution-processed hybrid composed of a conjugated diketopyrrolopyrrole-base polymer/PC_(70)BM bulk heterojunction organic host together with inorganic guest NaYF_(4):15%Er~(3+) upconversion nanoparticles (UCNPs). Under the illumination of λ = 1.5 μm SWIR photons, optimized hybrid bulk-heterojunction (BHJ)/UCNP photodetectors exhibit a photoresponsivity of 0.73 and 0.44 mA/W, respectively, for devices built on rigid indium tin oxide (ITO)/glass and flexible ITO/polyethylene terephthalate substrates. These hybrid photodetectors are capable of performing SWIR photodetection with a fast operation speed, characterized by a short photocurrent rise time down to 80 μs, together with an excellent mechanical robustness for flexible applications. Exhibiting simultaneously multiple advantages including solution-processability, flexibility, and the absence of toxic heavy metal elements together with a fast operation speed and good photoresponsivity, these hybrid BHJ(DPPTT-T/PC_(70)BM)/UCNP photodetectors are promising candidates for next-generation low-cost and high-performance SWIR photodetectors.
机译:短波红外(SWIR)波长窗口中的光检测代表了允许许多应用的核心技术之一。由于使用高度毒性重金属元素,大多数电流光电探测器由于外延生长要求和生态问题而遭受高成本。对于替代的SWIR光检测策略,在这项工作中,基于由由缀合的二酮吡咯基碱基聚合物/ PC_( 70)BM Bulk异质结有机宿主与无机客体NayF_(4):15%ER〜(3+)上变化纳米颗粒(UCNP)。在λ=1.5μm的照明下,优化的混合体散装 - 异质结(BHJ)/ UCNP光电探测器分别表现出0.73和0.44 mA / W的光反对子,用于基于刚性铟锡(ITO)/玻璃和柔性的装置ITO /聚对苯二甲酸乙二醇酯基材。这些混合光电探测器能够以快速操作速度执行SWIR光检测,其特征在于短的光电流上升时间降至80μs,以及柔性应用的优异的机械稳健性。同时表现出多种优点,包括解决方案 - 可加工性,灵活性和毒性重金属元素的缺失以及快速的操作速度和良好的光反应性,这些混合BHJ(DPPTT-T / PC_(70)BM)/ UCNP光电探测器是有前途的候选者下一代低成本和高性能SWIR光电探测器。

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