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Bolometric-Effect-Based Wavelength-Selective Photodetectors Using Sorted Single Chirality Carbon Nanotubes

机译:使用排序的单手性碳纳米管的基于计量效应的波长选择光电探测器。

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摘要

This paper exploits the chirality-dependent optical properties of single-wall carbon nanotubes for applications in wavelength-selective photodetectors. We demonstrate that thin-film transistors made with networks of carbon nanotubes work effectively as light sensors under laser illumination. Such photoresponse was attributed to photothermal effect instead of photogenerated carriers and the conclusion is further supported by temperature measurements. Additionally, by using different types of carbon nanotubes, including a single chirality (9,8) nanotube, the devices exhibit wavelength-selective response, which coincides well with the absorption spectra of the corresponding carbon nanotubes. This is one of the first reports of controllable and wavelength-selective bolometric photoresponse in macroscale assemblies of chirality-sorted carbon nanotubes. The results presented here provide a viable route for achieving bolometric-effect-based photodetectors with programmable response spanning from visible to near-infrared by using carbon nanotubes with pre-selected chiralities.
机译:本文利用了单壁碳纳米管的手征性光学性质,将其用于波长选择光电探测器。我们证明了用碳纳米管网络制成的薄膜晶体管在激光照射下可以有效地用作光传感器。这种光响应归因于光热效应而不是光生载流子,并且温度测量进一步支持了这一结论。另外,通过使用包括单个手性(9,8)纳米管的不同类型的碳纳米管,这些器件表现出波长选择响应,该响应与相应碳纳米管的吸收光谱非常吻合。这是手性分类碳纳米管的宏观组装中可控的和波长选择的辐射热反应的最早报道之一。此处提供的结果提供了一种可行的途径,可通过使用具有预先选择的手性的碳纳米管,实现具有可编程响应,从可见光到近红外的,基于辐射热效应的光电探测器。

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