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Scalable Processing of Low Voltage Organic Field Effect Transistors With a Facile Soft-Contact Coating Approach

机译:简便的软接触涂层方法可扩展地处理低压有机场效应晶体管

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摘要

A soft-contact coating (SCC) method, using a rotatable steel sheet as the meniscus guide, is developed for depositing organic semiconductors (OSCs). The method is used to fabricate bottom-gate bottom-contact organic-field effect transistors (OFETs) using blended solution of small molecule OSC and polymer binder. During the coating process, the meniscus guide maintains very weak contact force to the substrate surface, avoiding damages to the pre-fabricated electrodes. Even at a fast coating speed of 20 mm/s, well controlled crystallization can be achieved to form low sub-gap density of the states (DOS) channels for low voltage OFETs of excellent uniformity. The fabricated low voltage OFETs on plastic substrate in full solution processes exhibit high mobility reaching 1.5 cm(2).V-1.s(-1), and a small threshold voltage dispersion less than 250 mV for measured 159 devices.
机译:开发了一种使用可旋转钢板作为弯液面导向器的软接触涂层(SCC)方法,用于沉积有机半导体(OSC)。该方法用于使用小分子OSC和聚合物粘合剂的混合溶液制造底栅底接触有机场效应晶体管(OFET)。在涂覆过程中,弯液面导向器保持与基材表面的接触力非常弱,从而避免了损坏预制电极。即使以20 mm / s的快速涂布速度,也可以实现良好控制的结晶,以形成状态均匀(DOS)的低子间隙密度的低通道OFET。在全溶液工艺中在塑料基板上制造的低电压OFET表现出高达1.5 cm(2).V-1.s(-1)的高迁移率,并且对于159个测量的器件而言,阈值电压的色散小于250 mV。

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