苯并菲
中间相
盘状液晶
薗头偶联反应
结晶学
接受者
材料科学
电子受体
电子迁移率
柱状相
分子线
化学
液晶
光化学
分子
光电子学
有机化学
物理
凝聚态物理
催化作用
钯
作者
Ke‐Qing Zhao,Lingling An,Xiaobo Zhang,Wenhao Yu,Ping Hu,Bi‐Qin Wang,Jing Xu,Qingdao Zeng,Hirosato Monobe,Yo Shimizu,Benoı̂t Heinrich,Bertrand Donnio
标识
DOI:10.1002/chem.201500889
摘要
Abstract Four new donor–acceptor triads (D–A–D) based on discotic and arylene mesogens have been synthesized by using Sonogashira coupling and cyclization reactions. This family of triads consists of two side‐on pending triphenylene mesogens, acting as the electron‐donating groups (D), laterally connected through short lipophilic spacers to a central perylenediimide (PI), benzo[ ghi ]perylenediimide (BI), or coronenediimide (CI) molecular unit, respectively, playing the role of the electron acceptor (A). All D–A–D triads self‐organize to form a lamello‐columnar oblique mesophase, with a highly segregated donor–acceptor (D–A) heterojunction organization, consequent to efficient molecular self‐sorting. The structure consists in the regular alternation of two disrupted rows of triphenylene columns and a continuous row of diimine species. High‐resolution STM images demonstrate that PI‐TP2 forms stable 2D self‐assembly nanostructures with some various degrees of regularity, whereas the other triads do not self‐organize into ordered architectures. The electron‐transport mobility of CI‐TP2, measured by time‐of‐flight at 200 °C in the mesophase, is one order of magnitude higher than the hole mobility. By means of this specific molecular designing idea, we realized and demonstrated for the first time the so‐called p–n heterojunction at the molecular level in which the electron‐rich triphenylene columns act as the hole transient pathways, and the coronenediimide stacks form the electron‐transport channels.
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