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Field-Effect Transistors Based on 2D Organic Semiconductors Developed by a Hybrid Deposition Method.


ABSTRACT: Solution-processed 2D organic semiconductors (OSCs) have drawn considerable attention because of their novel applications from flexible optoelectronics to biosensors. However, obtaining well-oriented sheets of 2D organic materials with low defect density still poses a challenge. Here, a highly crystallized 2,9-didecyldinaphtho[2,3-b:2',3'-f]thieno[3,2-b]thiophene (C10-DNTT) monolayer crystal with large-area uniformity is obtained by an ultraslow shearing (USS) method and its growth pattern shows a kinetic Wulff's construction supported by theoretical calculations of surface energies. The resulting seamless and highly crystalline monolayers are then used as templates for thermally depositing another C10-DNTT ultrathin top-up film. The organic thin films deposited by this hybrid approach show an interesting coherence structure with a copied molecular orientation of the templating crystal. The organic field-effect transistors developed by these hybrid C10-DNTT films exhibit improved carrier mobility of 14.7 cm2 V-1 s-1 as compared with 7.3 cm2 V-1 s-1 achieved by pure thermal evaporation (100% improvement) and 2.8 cm2 V-1 s-1 achieved by solution sheared monolayer C10-DNTT. This work establishes a simple yet effective approach for fabricating high-performance and low-cost electronics on a large scale.

SUBMITTER: Zhou Z 

PROVIDER: S-EPMC6774035 | biostudies-literature | 2019 Oct

REPOSITORIES: biostudies-literature

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Field-Effect Transistors Based on 2D Organic Semiconductors Developed by a Hybrid Deposition Method.

Zhou Zhiwen Z   Wu Qisheng Q   Wang Sijia S   Huang Yu-Ting YT   Guo Hua H   Feng Shien-Ping SP   Chan Paddy Kwok Leung PKL  

Advanced science (Weinheim, Baden-Wurttemberg, Germany) 20190801 19


Solution-processed 2D organic semiconductors (OSCs) have drawn considerable attention because of their novel applications from flexible optoelectronics to biosensors. However, obtaining well-oriented sheets of 2D organic materials with low defect density still poses a challenge. Here, a highly crystallized 2,9-didecyldinaphtho[2,3-b:2',3'-f]thieno[3,2-b]thiophene (C<sub>10</sub>-DNTT) monolayer crystal with large-area uniformity is obtained by an ultraslow shearing (USS) method and its growth pa  ...[more]

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