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首页> 外文期刊>Chemistry of Materials: A Publication of the American Chemistry Society >β-Alkyl substituted Dithieno[2,3-d;2',3'- d']benzo[1,2-b;4,5-b']dithiophene Semiconducting Materials and Their Application to Solution-Processed Organic Transistors
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β-Alkyl substituted Dithieno[2,3-d;2',3'- d']benzo[1,2-b;4,5-b']dithiophene Semiconducting Materials and Their Application to Solution-Processed Organic Transistors

机译:β-烷基取代的二噻吩并[2,3-d; 2',3'-d']苯并[1,2-b; 4,5-b']二噻吩半导体材料及其在溶液加工有机晶体管中的应用

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摘要

A novel highly π-extended heteroacene with four symmetrically fused thiophene-ring units and solubilizing substituents at the terminal β-positions on the central ring, dithieno[2,3-d;2',3'-d']benzo[1,2-b;4,5-b']dithiophene (DTBDT) was synthesized via intramolecular electrophilic coupling reaction. The α-positions availability in the DTBDT motif enables the preparation of solution-processable DTBDT-based polymers such as PDTBDT, PDTBDT-BT, PDTBDT-DTBT, and PDTBDT-DTDPP. Even with its highly extended acene-like π-framework, all polymers show fairly good environmental stability of their highest occupied molecular orbitals (HOMOs) from -5.21 to -5.59 eV. In the course of our study to assess a profile of semiconductor properties, field- effect transistor performance of the four DTBDT-containing copolymers via solution-process is characterized, and PDTBDT-DTDPP exhibits the best electrical performance with a hole mobility of 1.70 X 10~(-2) cm~2 V~(-1) s~(-1). PDTBDT-DTDPP has a relatively smaller charge injection barrier for a hole from the gold electrodes and maintains good coplanarity of the polymer backbone, indicating the enhanced π-π stacking characteristic and charge carrier transport. The experimental results demonstrate that our molecular design strategy for air-stable, high-performance organic semiconductors is highly promising.
机译:一种新颖的高度π-延伸的杂并苯,其具有四个对称稠合的噻吩环单元,且在中心环的末端β-位具有可溶取代基,二噻吩并[2,3-d; 2',3'-d']苯并[1,通过分子内亲电偶联反应合成2-b; 4,5-b']二噻吩(DTBDT)。 DTBDT基序中的α位置可用性使得能够制备可溶液处理的DTBDT基聚合物,例如PDTBDT,PDTBDT-BT,PDTBDT-DTBT和PDTBDT-DTDPP。即使具有高度扩展的并苯类π骨架,所有聚合物在-5.21至-5.59 eV范围内的最高占据分子轨道(HOMO)仍显示出相当好的环境稳定性。在我们评估半导体特性的研究过程中,通过溶液法对四种含DTBDT的共聚物的场效应晶体管性能进行了表征,PDTBDT-DTDPP表现出最佳的电性能,其空穴迁移率为1.70 X 10 〜(-2)cm〜2 V〜(-1)s〜(-1)。 PDTBDT-DTDPP对来自金电极的孔具有相对较小的电荷注入势垒,并保持了聚合物主链的良好共面性,表明增强的π-π堆积特性和电荷载流子传输。实验结果表明,我们的用于空气稳定,高性能有机半导体的分子设计策略非常有前途。

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