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首页> 外文期刊>ACS Sustainable Chemistry & Engineering >Excellent-Performance C-60/Graphene/SWCNT Heterojunction with Light-Controlled Enhancement of Photocurrent
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Excellent-Performance C-60/Graphene/SWCNT Heterojunction with Light-Controlled Enhancement of Photocurrent

机译:优异的C-60 /石墨烯/ SWCNT异质结,具有光控增强的光电流

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Carbon allotropes have been widely investigated in photoelectric applications, including single-walled carbon nanotubes (SWCNT), graphene, and C-60, due to their high carrier mobility and superior optical properties. Unfortunately, it is proved that the device only by one type of carbon allotropes alone could barely exhibit high performance both in the near-infrared (NIR) range and in the visible-light (VL) range. Here, we demonstrate a broadband photodetector based on all-carbon materials (C-60/graphene/SWCNT) which possesses an ultrahigh photoresponsivity (R-i) (>10(4) A/W @ 450 nm and 545.7 A/W @ 780 nm) in the VL and NIR region, which is beyond that of similar all-carbon-based photodetectors consisting of one type of carbon allotropes. More interestingly, the response time of the NIR waveband can be modulated by the VL waveband as a gate signal. The response time to be modulated will be reduced by an order of magnitude. Meanwhile, the optical modulation mechanism is also thoroughly discussed and analyzed. The combination of high responsivities, tunable operation speeds, and broad bandwidth demonstrates this hybrid film as a potential candidate for energy efficient nanoelectronics.
机译:由于其高载体迁移率和优异的光学性能,已经广泛研究了光电应用中的光电应用中的碳异滴产品,包括单壁碳纳米管(SWCNT),石墨烯和C-60。不幸的是,证明了仅通过一种类型的碳异滴产品的装置在近红外(NIR)范围和可见光(VL)范围内几乎不能在近红外(NIR)范围内的高性能。在这里,我们展示了基于全碳材料(C-60 /石墨烯/ SWCNT)的宽带光电探测器,其具有超高光学转换性(RI)(> 10(4)A / W @ 450nm和545.7 A / W @ 780nm )在VL和NIR区域中,超出了由一种由一种类型的碳异滴组成的相似全碳的光电探测器。更有意义地,可以通过VL波段作为栅极信号调制NIR波带的响应时间。要调制的响应时间将减小级别。同时,还彻底讨论和分析了光学调制机制。高响应性,可调谐操作速度和宽带宽的组合演示了这种混合膜作为节能纳米电子的潜在候选者。

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