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Mitigating Meniscus Instabilities in Solution-Sheared Polymer Films for Organic Field-Effect Transistors

机译:用于有机场效应晶体管的溶液剪切聚合物膜中的弯月面稳定性

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Semiconducting donor-acceptor copolymers are considered to be a promising material class for solution-coated, large-scale organic electronic applications. A large number of works have shown that the best-performing organic field-effect transistors (OFETs) are obtained on low-surface-energy substrates. The meniscus instabilities that occur when coating on such surfaces considerably limit the effective deposition speeds. This represents a limiting factor for the upscaling of device fabrication for mass production, an issue that needs to be addressed if organic electronic devices are ever to become commercially relevant. In this work, we present a method to increase the accessible window of coating speeds for the solution shearing of donor-acceptor semiconductor polymers for the fabrication of OFETs. By incorporating a piezo crystal that is capable of producing high-frequency vibrations into the coating head, we are able to mitigate contact line instabilities due to the depinning of the contact line, thereby suppressing the commonly encountered "stick-and-slip" phenomenon.
机译:半导体供体 - 受体共聚物被认为是溶液涂层大型有机电子应用的有希望的材料类。大量有效表明,在低表面能基板上获得最佳性能的有机场效应晶体管(OFET)。当涂覆在这种表面上时发生的弯月面不稳定性显着限制了有效的沉积速度。这代表了批量生产的设备制造上升的限制因素,如果有机电子设备以商业相关,则需要解决的问题。在这项工作中,我们提出了一种方法来增加用于制备供体 - 受体半导体聚合物的溶液剪切的涂层速度的可移窗口的方法。通过结合能够在涂层头中产生高频振动的压电晶体,由于接触线的脱落,我们能够减轻接触线稳定性,从而抑制通常遇到的“粘滑”现象。

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