• Title/Summary/Keyword: 유기 박막 트랜지스터

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Electrical Characteristic of PMMA Thin Film by Plasma Polymerization Method with Process Pressure and RF Substrate Bias Power (공정압력 및 기판바이어스 인가유무에 따른 PMMA 플라즈마중합박막의 전기적 특성)

  • Lee, Boong-Joo
    • The Journal of the Korea institute of electronic communication sciences
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    • v.6 no.5
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    • pp.697-702
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    • 2011
  • In this paper, We have fabricated PMMA thin films by plasma polymerization method for organic thin film transistor's insulator layer. In the electrical characteristic results with deposition pressures and substrate RF bias power in thin film deposition process, we have got dielectric constant of 3.4, high deposition rate of 8.6 [nm/min] and high insulation characteristics in condition of RF100 [W], Ar20 [sccm], 5 [mtorr], RF bias 20 [W]. Therefore, the fabricated thin films are possible as insulation layer of OTFT and organic memory.

Fabricated and analysis of electronic circuit using organic semiconductor (유기물을 이용한 전자회로 제작 및 분석)

  • Choi, Yong-Seok;Park, Eung-Kyu;Kim, Bo-Seop;Jung, Jin-Gwan;Kim, Hyuck;Kim, Yong-Sang
    • Proceedings of the KIEE Conference
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    • 2011.07a
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    • pp.61-62
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    • 2011
  • 본 논문에서는 top-contact 구조의 유기 박막 트랜지스터를 이용하여 정류기와 인버터를 제작하고 전기적 특성을 분석 하였다. 게이트 절연막으로는 PMMA (polymethyl methacrylate)를 사용하였고 유기물 활성층으로 pentacene을 진공 증착하여 사용하였다. 유기 박막 트랜지스터로 제작된 정류기는 약 3 V의 DC 전압을 얻어 39 %의 효율특성을 보였고, 인버터는 1.2의 이득값을 얻어 유기전자회로의 실용 가능성을 확인 하였다.

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유기물처리된 박막의 XPS를 이용한 탄소함량에 대한 연구

  • O, De-Re-Sa;Kim, Hong-Bae
    • Proceedings of the Korean Society Of Semiconductor Equipment Technology
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    • 2006.10a
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    • pp.18-21
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    • 2006
  • 유기 반도체로서 트랜지스터에 사용되기 위해서 유기절연막은 $SiO_2$ 표면을 유기물로 처리하여 $SiO_2$ 박막 표면의 화학적 특성을 변화시키고 절연특성을 개선 함으로서 단위 소자의 특성을 개선시키고 있다. 그래서 $SiO_2$ 표면 위에 OTS를 처리하여 누설전류를 측정하였다. OTS처리함량에 따라서 누설전류가 흐르는 경향성은 다르게 나타났으며, 0.2% 처리된 박막에서 누설전류는 가장 적게 나타났다.

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Low-voltage Pentacene Field-Effect Transistors Based on P(S-r-BCB-r-MMA) Gate Dielectrics (P(S-r-BCB-r-MMA) 게이트 절연체를 이용한 저전압 구동용 펜타센 유기박막트랜지스터)

  • Koo, Song Hee;Russell, Thomas P.;Hawker, Craig J.;Ryu, Du Yeol;Lee, Hwa Sung;Cho, Jeong Ho
    • Applied Chemistry for Engineering
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    • v.22 no.5
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    • pp.551-554
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    • 2011
  • One of the key issues in the research of organic field-effect transistors (OFETs) is the low-voltage operation. To address this issue, we synthesized poly(styrene-r-benzocyclobutene-r-methyl methacrylate) (P(S-r-BCB-r-MMA)) as a thermally cross-linkable gate dielectrics. The P(S-r-BCB-r-MMA) showed high quality dielectric properties due to the negligible volume change during the cross-linking. The pentacene FETs based on the 34 nm-thick P(S-r-BCB-r-MMA) gate dielectrics operate below 5 V. The P(S-r-BCB-r-MMA) gate dielectrics yielded high device performance, i.e. a field-effect mobility of $0.25cm^2/Vs$, a threshold voltage of -2 V, an sub-threshold slope of 400 mV/decade, and an on/off current ratio of ${\sim}10^5$. The thermally cross-linkable P(S-r-BCB-r-MMA) will provide an attractive candidate for solution-processable gate dielectrics for low-voltage OFETs.

Effect of Organic Solvent-Modification on the Electrical Characteristics of the PCBM Thin-Film Transistors on Plastic substrate (플라스틱 기판상에 제작된 PCBM 박막 트랜지스터의 전기적 특성에 대한 유기 용매 최적화의 효과에 대한 연구)

  • Hyung, Gun-Woo;Lee, Ho-Won;Koo, Ja-Ryong;Lee, Seok-Jae;Kim, Young-Kwan
    • Journal of the Korean Applied Science and Technology
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    • v.29 no.2
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    • pp.199-204
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    • 2012
  • Organic thin-film transistors (OTFTs) have received considerable attention because their potential applications for nano-scale thin-film structures have been widely researched for large-scale integration industries, such as semiconductors and displays. However, research in developing n-type materials and devices has been relatively shortage than developing p-type materials. Therefore, we report on the fabrication of top-contact [6,6]-phenyl-C61-butyricacidmethylester (PCBM) TFTs by using three different solvent, o-dichlorobenzene, toluene and chloroform. An appropriate choice of solvent shows that the electrical characteristics of PCBM TFTs can be improved. Moreover, our PCBM TFTs with the cross-linked Poly(4-vinylphenol) dielectric layer exhibits the most pronounced improvements in terms of the field-effect mobility (${\sim}0.034cm^2/Vs$) and the on/off current ratio (${\sim}1.3{\times}10^5$) for our results. From these results, it can be concluded that solvent-modification of an organic semiconductor in PCBM TFTs is useful and can be extended to further investigations on the PCBM TFTs having polymeric gate dielectrics. It is expected that process optimizations using solution-processing of organic semiconductor materials will allow the development of the n-type organic TFTs for low-cost electronics and various electronic applications.