Advanced Technology Institute, Department of Electronic Engineering, University of Surrey, Guildford, Surrey, GU2 7XH, United Kingdom.
Sci Rep. 2014 May 23;4:5041. doi: 10.1038/srep05041.
One dimensional single-crystal nanorods of C60 possess unique optoelectronic properties including high electron mobility, high photosensitivity and an excellent electron accepting nature. In addition, their rapid large scale synthesis at room temperature makes these organic semiconducting nanorods highly attractive for advanced optoelectronic device applications. Here, we report low-cost large-area flexible photoconductor devices fabricated using C60 nanorods. We demonstrate that the photosensitivity of the C60 nanorods can be enhanced ~400-fold via an ultralow photodoping mechanism. The photodoped devices offer broadband UV-vis-NIR spectral tuneability, exhibit a detectivitiy>10(9) Jones, an external quantum efficiency of ~100%, a linear dynamic range of 80 dB, a rise time 60 µs and the ability to measure ac signals up to ~250 kHz. These figures of merit combined are among the highest reported for one dimensional organic and inorganic large-area planar photoconductors and are competitive with commercially available inorganic photoconductors and photoconductive cells. With the additional processing benefits providing compatibility with large-area flexible platforms, these devices represent significant advances and make C60 nanorods a promising candidate for advanced photodetector technologies.
一维单晶 C60 纳米棒具有独特的光电性能,包括高电子迁移率、高灵敏度和优异的电子接受性质。此外,它们在室温下的快速大规模合成使得这些有机半导体纳米棒在先进的光电设备应用中极具吸引力。在这里,我们报告了使用 C60 纳米棒制造的低成本大面积柔性光电导体器件。我们证明,通过超低光掺杂机制,C60 纳米棒的灵敏度可以增强约 400 倍。光掺杂器件具有宽的紫外-可见-近红外光谱可调谐性,表现出>10(9)琼斯的探测率、约 100%的外量子效率、80 dB 的线性动态范围、60 µs 的上升时间和测量高达约 250 kHz 的交流信号的能力。这些综合性能指标在一维有机和无机大面积平面光电导体中属于最高水平之一,与商业上可用的无机光电导体和光电导器件相竞争。由于额外的处理优势提供了与大面积柔性平台的兼容性,这些器件代表了重要的进展,使 C60 纳米棒成为先进光电探测器技术的有前途的候选者。