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MAPLE-deposited polymer films for improved organic device performance

机译:MAPLE沉积的聚合物膜可改善有机器件性能

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Matrix-assisted pulsed-laser evaporation (MAPLE) provides a mechanism for layer-by-layer growth to control the polymer–dielectric interface in organic metal–insulator–semiconductor (MIS) diodes and field-effect transistors (FETs). MAPLE-deposited copolymers of polyfluorene (PF) and polythiophene maintain their structural and optical properties, as determined by Raman spectroscopy, absorption, and photoluminescence. These films are further utilized in MIS and FET structures with SiO2 and other polymer dielectrics. Since common polymer dielectrics prevent spin coating of solution processable polymers due to solubility effects, MAPLE is one of the only deposition techniques for investigating all polymer semiconductor-insulator interfaces. In this paper we present optical and electrical studies of MAPLE-deposited PF and polythiophene films in FETs and MIS structures. The FET carrier mobilities of these devices compare well with spin-coated devices. Capacitance–voltage and conductance–voltage from MIS structures with MAPLE-deposited PF copolymer films yield interface trap densities in the low 1012 eV−1 cm−2 range.
机译:基质辅助脉冲激光蒸发(MAPLE)为逐层生长提供了一种机制,以控制有机金属-绝缘体-半导体(MIS)二极管和场效应晶体管(FET)中的聚合物-介电界面。通过拉曼光谱,吸收和光致发光确定,MAPLE沉积的聚芴(PF)和聚噻吩共聚物可保持其结构和光学性质。这些膜还用于具有SiO 2 和其他聚合物电介质的MIS和FET结构中。由于常见的聚合物电介质由于溶解度的影响而无法旋涂可溶液处理的聚合物,因此MAPLE是研究所有聚合物半导体-绝缘体界面的唯一沉积技术之一。在本文中,我们介绍了在FET和MIS结构中MAPLE沉积的PF和聚噻吩薄膜的光学和电学研究。这些设备的FET载流子迁移率与旋涂设备相当。带有MAPLE沉积的PF共聚物薄膜的MIS结构的电容-电压和电导-电压在低10 12 eV -1 cm -2 < / sup>范围。

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