异质结
光电流
石墨烯
光电子学
化学
光电二极管
纳米尺度
二极管
光电效应
纳米技术
材料科学
作者
Xiaoxi Zhang,Yunbin Hu,Carlos R. Lien-Medrano,Juan Li,Jinping Shi,Xinshun Qin,Zhenxing Liao,Yan Wang,Zishu Wang,Jiawei Li,Jianing Chen,Guangyu Zhang,Johannes V. Barth,Thomas Frauenheim,Willi Auwärter,Akimitsu Narita,Kläus Müllen,Carlos‐Andres Palma
摘要
Graphene nanoribbon heterostructures and heterojunctions have attracted interest as next-generation molecular diodes with atomic precision. Their mass production via solution methods and prototypical device integration remains to be explored. Here, the bottom-up solution synthesis and characterization of liquid-phase-processable graphene nanoribbon heterostructures (GNRHs) are demonstrated. Joint photoresponsivity measurements and simulations provide evidence of the structurally defined heterostructure motif acting as a type-I heterojunction. Real-time, time-dependent density functional tight-binding simulations further reveal that the photocurrent polarity can be tuned at different excitation wavelengths. Our results introduce liquid-phase-processable, self-assembled heterojunctions for the development of nanoscale diode circuitry and adaptive hardware.
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