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Performance Improvement of Organic Thin Film Transistors Based on Gate Insulator Polymethyl-Methacrylate-co-Glyciclyl-Methacrylate

Liu Xue-Qiang1, Zhang Tong1, Wang Li-Jie1, Li Ming-You1, Feng Chen-Gang1,2 and Ma Dong-Ge2

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Organic thin transistors (OTFTs) on indium tin oxide glass substrates are prepared with polymethyl-methacrylate-co-glyciclyl-methacrylate (PMMA-GMA) as the gate insulator layer and copper phthalocyanine as the organic semiconductor layer. By controlling the thickness, the average roughness of surface is reduced and the OTFT performance is improved with leak current decreasing to 10−11 A and on/off ratio of 104. Under the condition of drain-source voltage −20 V, a threshold voltage of −3.5 V is obtained. The experimental results show that PMMA-GMA is a promising insulator material with a dielectric constant in a range of 3.9–5.0.


PACS

85.30.Tv Field effect devices

85.30.De Semiconductor-device characterization, design, and modeling

77.22.Ch Permittivity (dielectric function)

Subjects

Condensed matter: electrical, magnetic and optical

Electronics and devices

Semiconductors

Dates

Issue 2 (February 2008)

Received 20 November 2007



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