Insights Into Interface Treatments in P-Channel Organic Thin-Film Transistors Based on a Novel Molecular Semiconductor

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Date

2017

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Journal ISSN

Volume Title

Publisher

IEEE-Inst Electrical Electronics Engineers Inc

Open Access Color

Green Open Access

No

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Top 10%

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Abstract

Organic thin-film transistors (OTFTs) were fabricated using a novel small molecule, C6-NTTN, as the semiconductor layer in several different architectures. The C6-NTTN layer was deposited via both vacuum evaporation at different substrate temperatures and via solution-processing, which yield maximum hole mobilities of 0.16 and 0.05 cm(2)/V . s, respectively. Surface treatments of the substrate, insulator, and metal contacts used for OTFT fabrication employing polymer films and different self-assembled monolayers were investigated. In particular, in bottom-gate devices, the insulator surface hydrophobicity was optimized by the deposition of poly(methyl methacrylate) or hexamethyldisilazane, while in the top-gate geometry, pentafluorobenzenethiol was efficiently used to modify the substrate surface energy and to change the contact work function. Atomic force microscopy analysis was exploited to understand the relationship between the semiconductor thin-film morphology and the device electrical performance. The results shown here indicate an inverse proportionality between the mobility and the interface trap density, with parameters depending especially on semiconductor-insulator interfacial properties, and a correlation between the threshold voltage and the characteristics of the semiconductor-metal interface.

Description

Facchetti, Antonio/0000-0002-8175-7958; Di Benedetto, Luigi/0000-0001-5588-0621; Liguori, Rosalba/0000-0002-0093-1169; Usta, Hakan/0000-0002-0618-1979; Licciardo, Gian Domenico/0000-0002-1913-4928

Keywords

Charge Carrier Mobility, Organic Thin-Film Transistors (OTFTs), Semiconductor-Insulator Interfaces, Semiconductor-Metal Interfaces, Surface Treatment, Charge carrier mobility; organic thin-film transistors (OTFTs); semiconductor-insulator interfaces; semiconductor-metal interfaces; surface treatment; Electronic, Optical and Magnetic Materials; Electrical and Electronic Engineering

Fields of Science

0103 physical sciences, 02 engineering and technology, 0210 nano-technology, 01 natural sciences

Citation

WoS Q

Q2

Scopus Q

Q2
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OpenCitations Citation Count
11

Source

IEEE Transactions on Electron Devices

Volume

64

Issue

5

Start Page

2338

End Page

2344
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CrossRef : 12

Scopus : 12

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Mendeley Readers : 21

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