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首页> 外文期刊>acs omega >Thieno3,2-bpyrrole and Benzoc1,2,5thiadiazole Donor–Acceptor Semiconductors for Organic Field-Effect Transistors
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Thieno3,2-bpyrrole and Benzoc1,2,5thiadiazole Donor–Acceptor Semiconductors for Organic Field-Effect Transistors

机译:噻吩并3,2-b吡咯和苯并c1,2,5噻二唑 有机场效应晶体管的供体-受体半导体

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Two p-type donor–acceptor (D–A) semiconducting small molecules were synthesized to investigate the effect of the backbone curvature on the organic field-effect transistor performance. The backbone curvature of the donor–acceptor small molecules was modified by changing the spacer group from bithiophene to thienothiophene. Bithiophene to thienothiophene spacer groups were placed between 4H-thieno3,2-bpyrrole (donor) and benzoc1,2,5thiadiazole (acceptor) to generate TP-BT4T-TP and TP-BT2TT-TP donor–acceptor molecules. A good charge carrier mobility of 2.59 × 10–2 cm2 V–1 s–1 was measured for the curved molecule (TP-BT4T-TP), while the linear molecule analog (TP-BT2TT-TP) only gave a low mobility of 5.41 × 10–5 cm2 V–1 s–1 after annealing at 120 °C in bottom-contact bottom-gate devices. Out-of-plane grazing-incidence X-ray diffraction analysis revealed more drastic thermally induced crystallinity for TP-BT4T-TP as compared to TP-BT2TT-TP, explaining the difference observed in the performance of devices fabricated from each molecule.
机译:合成了2个p型供体-受体(D-A)半导体小分子,研究了主链曲率对有机场效应晶体管性能的影响。通过将间隔基从联噻吩改为噻吩来改变供体-受体小分子的骨架曲率。将联噻吩至噻吩吩间隔基团置于4H-噻吩并[3,2-b]吡咯(供体)和苯并[c][1,2,5]噻二唑(受体)之间,以生成TP-BT4T-TP和TP-BT2TT-TP供体-受体分子。弯曲分子 (TP-BT4T-TP) 测得的良好载流子迁移率为 2.59 × 10–2 cm2 V–1 s–1,而线性分子类似物 (TP-BT2TT-TP) 在 120 °C 下退火后仅给出 5.41 × 10–5 cm2 V–1 s–1 的低迁移率。面外掠入射X射线衍射分析显示,与TP-BT2TT-TP相比,TP-BT4T-TP的热诱导结晶度更剧烈,这解释了在由每个分子制造的器件性能方面观察到的差异。

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