• Title/Summary/Keyword: OFET

Search Result 46, Processing Time 0.031 seconds

Fabrication and Electrical Properties of CuPc FET with Different Substrate Temperature (CuPc FET의 기판온도에 따른 제작 및 전기적 특성 연구)

  • Lee, Ho-Shik;Park, Yong-Pil;Lim, Eun-Ju;Iwamot, Mistumasa
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
    • /
    • 2007.06a
    • /
    • pp.488-489
    • /
    • 2007
  • Organic field-effect transistors (OFETs) are of interest for use in widely area electronic applications. We fabricated a copper phthalocyanine (CuPc) based field-effect transistor with different substrate temperature. The CuPc FET device was made a top-contact type and the substrate temperature was room temperature and $150^{\circ}C$. The CuPc thickness was 40nm, and the channel length was $50{\mu}m$, channel width was 3mm. We observed a typical current-voltage (I-V) characteristics in CuPc FET.

  • PDF

A Study on the Numerical Calculation of the Electron Density in Organic Semiconductors (유기반도체에서 전자 밀도의 수치적 계산에 관한 연구)

  • Yeom, Keesoo
    • Proceedings of the Korean Institute of Information and Commucation Sciences Conference
    • /
    • 2016.10a
    • /
    • pp.161-163
    • /
    • 2016
  • Organic semiconductors, in contrast with inorganic semiconductors, have DOS of the Gaussian distribution function which leads to difficulties to obtain the electron density with a closed equation. For this reason, the prediction of the device operation is extremely difficult in the development of OLED and the repetitive trial-and-error is required to find the appropriate electrical and optical properties of the devices. In this paper, the standard to analyze organic semiconductor is proposed by the optimization of the time and the accuracy which is necessary for the numerical calculation of the electron density in organic semiconductors.

  • PDF

Improving Charge Injection Characteristics and Electrical Performances of Polymer Field-Effect Transistors by Selective Surface Energy Control of Electrode-Contacted Substrate (전극 접촉영역의 선택적 표면처리를 통한 유기박막트랜지스터 전하주입특성 및 소자 성능 향상에 대한 연구)

  • Choi, Giheon;Lee, Hwa Sung
    • Journal of Adhesion and Interface
    • /
    • v.21 no.3
    • /
    • pp.86-92
    • /
    • 2020
  • We confirmed the effects on the device performances and the charge injection characteristics of organic field-effect transistor (OFET) by selectively differently controlling the surface energies on the contact region of the substrate where the source/drain electrodes are located and the channel region between the two electrodes. When the surface energies of the channel and contact regions were kept low and increased, respectively, the field-effect mobility of the OFET devices was 0.063 ㎠/V·s, the contact resistance was 132.2 kΩ·cm, and the subthreshold swing was 0.6 V/dec. They are the results of twice and 30 times improvements compared to the pristine FET device, respectively. As the results of analyzing the interfacial trap density according to the channel length, a major reason of the improved device performances could be anticipated that the pi-pi overlapping direction of polymer semiconductor molecules and the charge injection pathway from electrode is coincided by selective surface treatment in the contact region, which finally induces the decreases of the charge trap density in the polymer semiconducting film. The selective surface treatment method for the contact region between the electrode and the polymer semiconductor used in this study has the potential to maximize the electrical performances of organic electronics by being utilized with various existing processes to lower the interface resistance.

Improved performance of n-type organic field-effect transistor with a non-conjugated polyelectrolyte layer

  • Park, Yu Jung;Cha, Myoung Joo;Lee, Jin Hee;Cho, Shinuk;Seo, Jung Hwa;Walker, Bright
    • Proceedings of the Korean Vacuum Society Conference
    • /
    • 2016.02a
    • /
    • pp.151.2-151.2
    • /
    • 2016
  • We characterized the n-type organic field-effect transistors (OFETs) with non-conjugated polyelectrolytes (NPEs) interlayers as the electron injection layer. Novel NPEs with various ions (Cl-, Br-, I-) improved the electron mobility from $5.06{\times}10^{-3}$ to $2.10{\times}10^{-2}cm^2V^{-1}s^{-1}$ in OFETs based [6,6]-Phenyl-$C_{61}$-butyric acid methyl ester (PCBM) when $PEIEH^+I^-$ spin-cast from 0.6% solution was deposited onto the PCBM layer. Reduced electron injection barrier (${\phi}_e$) at NPE/metal electrode interface was induced by dipole formation and led to increase the electron injection and transport. These findings are important for understanding how NPEs function in devices, the improvement of device performance, and the design of new materials for use in optoelectronic devices.

  • PDF

Pentacene based organic thin film transistor on aqueous media for biosensor

  • Lee, Dong-Jun;Chae, Seung-Geun;Gwon, O-Jun;Jeong, Byeong-Jun
    • Proceedings of the Korean Vacuum Society Conference
    • /
    • 2015.08a
    • /
    • pp.210.2-210.2
    • /
    • 2015
  • 유기 박막 트랜지스터(Organic Thin Film Transistor, OTFT)기반의 바이오센서는 저비용 제작 및 플렉서블 소자 제작이 가능하여 많은 주목을 받아오고 있다. 본 연구에서는, hexamethyldisilazane (HMDS) 표면 처리된 $Si/SiO_2$ 기판 위에 진공 증착 공정을 이용하여 pentacene 기반의 OTFT를 제작한 후, 수용성 매체에 대한 안정성을 향상시키기 위하여 저분자 물질인 tetratetracontane (TTC)를 진공 증착 공정을 이용하여 증착하였으며, cyclized perfluoropolymer (CYTOP)을 용액 공정으로 코팅하여 bilayer의 passivation 층을 형성하였다. 실제 제작된 OTFT의 수용성 매체에 대한 안정성을 테스트하기 위하여 소자에 수용성 phosphate buffered saline (PBS)용액을 투하하여 10분에 걸쳐 1분 간격으로 transistor의 transfer 특성을 측정하였다. 또한 측정된 $I_d-V_g$ 곡선 데이터를 이용하여 시간에 따른 드레인 전류, 이동도, 문턱 전압, 점멸비 등의 수치를 산출하였다. 그리고, 그 $I_d-V_g$ 곡선 데이터와 산출된 데이터들을 증류수가 투하된 OTFT 소자의 $I_d-V_g$ 곡선 데이터와 산출된 데이터들과 비교하였다. 결론적으로, TTC/Cytop bilayer passivation 층이 형성된 OTFT 소자는 인체 내 혈액의 pH와 유사한 PBS 용액 하에서도 안정적인 구동 성능을 보여 바이오센서로 응용될 수 있는 가능성이 있다는 결론을 얻었다.

  • PDF

Electrical Properties of CuPC FET with Varying Substrate Temperature (CuPC PET의 기판온도에 따른 전기적 특성 연구)

  • Lee, Ho-Shik;Cheon, Min-Woo;Park, Yong-Pil
    • Journal of the Korea Institute of Information and Communication Engineering
    • /
    • v.13 no.1
    • /
    • pp.110-114
    • /
    • 2009
  • Organic field-effect transistors (OFETs) are of interest for use in widely area electronic applications. We fabricated a copper phthalocyanine (CuPc) based field-effect transistor with different substrate temperature. The CuPc FET device was made a top-contact type and the substrate temperature was room temperature and $150^{\circ}C$. The CuPc thickness was 40nm, and the channel length was $50{\mu}m$, channel width was 3mm. We observed a typical current-voltage (I-V) characteristics in CuPc FET.

Fabrication and Electrical Properties of CuPc FET with Different Substrate Temperature (CuPc FET의 기판온도에 따른 제작 및 전기적 특성 연구)

  • Lee, Ho-Shik;Yang, Seong-Ho;Park, Yong-Pil
    • Proceedings of the Korean Institute of Information and Commucation Sciences Conference
    • /
    • 2007.06a
    • /
    • pp.548-551
    • /
    • 2007
  • Organic field-effect transistors (OFETs) are of interest for use in widely area electronic applications. We fabricated a copper phthalocyanine (CuPc) based field-effect transistor with different substrate temperature. The CuPc FET device was made a top-contact type and the substrate temperature was room temperature and $150^{\circ}C$. The CuPc thickness was 40nm, and the channel length was $50{\mu}m$, channel width was 3mm. We observed a typical current-voltage (I-V) characteristics in CuPc FET.

  • PDF

Laser Sintering of Silver Nanoparticle for Flexible Electronics (유연소자 응용을 위한 은 나노입자의 레이저 소결)

  • Jia, Seok Young;Park, Won Tea;Noh, Yong-Young;Chang, Won Seok
    • Journal of the Korean Society of Manufacturing Technology Engineers
    • /
    • v.24 no.1
    • /
    • pp.135-139
    • /
    • 2015
  • We present a fine patterning method of conductive lines on polyimide (PI) and glass substrates using silver (Ag) nanoparticles based on laser scanning. Controlled laser irradiation can realize selective sintering of conductive ink without damaging the substrate. Thus, this technique easily creates fine patterns on heat-sensitive substrates such as flexible plastics. The selective laser sintering of Ag nanoparticles was managed by optimizing the conditions for the laser scan velocity (1.0-20 mm/s) and power (10-150 mW) in order to achieve a small gap size, high electrical conductivity, and fine roughness. The fabricated electrodes had a minimum channel length of $5{\mu}m$ and conductivity of $4.2{\times}10^5S/cm$ (bulk Ag has a conductivity of $6.3{\times}10^5S/cm$) on the PI substrate. This method was used to successfully fabricate an organic field effect transistor with a poly(3-hexylthiophene) channel.

Molecular-scale Structure of Pentacene at Functionalized Electronic Interfaces

  • Seo, Soon-Joo;Peng, Guowen;Mavrikakis, Manos;Ruther, Rose;Hamers, Robert J.;Evans, Paul G.;Kang, Hee-Jae
    • Proceedings of the Korean Vacuum Society Conference
    • /
    • 2011.02a
    • /
    • pp.299-299
    • /
    • 2011
  • A dipolar interlayer can cause dramatic changes in the device characteristics of organic field-effect transistors (OFETs) or photovoltaics. A shift in the threshold voltage, for example, has been observed in an OFET where the organic semiconductor active layer is deposited on SiO2 modified with a dipolar monolayer. Dipolar molecules can similarly be used to change the current-voltage characteristics of organic-inorganic heterojunctions. We have conducted a series of experiments in which different molecular linkages are placed between a pentacene thin film and a silicon substrate. Interface modifications with different linkages allow us to predict and examine the nature of tunneling through pentacene on modified Si surfaces with different dipole moment. The molecular-scale structure and the tunneling properties of pentacene thin films on modified Si (001) with nitrobenzene and styrene were examined using scanning tunneling spectroscopy. Electronic interfaces using organic surface dipoles can be used to control the band lineups of a semiconductor at organic/inorganic interfaces. Our results can provide insights into the charge transport characteristics of organic thin films at electronic interfaces.

  • PDF

Electrical Properties of F16CuPC Single Layer FET and F16CuPc/CuPc Double Layer FET

  • Lee, Ho-Shik;Park, Yong-Pil;Cheon, Min-Woo
    • Transactions on Electrical and Electronic Materials
    • /
    • v.8 no.4
    • /
    • pp.174-177
    • /
    • 2007
  • We fabricated organic field-effect transistors (OFETs) based a fluorinated copper phthalocyanine ($F_{16}CuPC$) and copper phthalocyanine (CuPc) as an active layer. And we observed the surface morphology of the $F_{16}CuPC$ thin film. The $F_{16}CuPC$ thin film thickness was 40 nm, and the channel length was $50{\mu}m$, channel width was 3 mm. And we also fabricated the $F_{16}CuPc/CuPc$ double layer FET and with different $F_{16}CuPc$ film thickness devices. We observed the typical current-voltage (I-V) characteristics and capacitance-voltage (C-V) in $F_{16}CuPc$ FET and we calculated the effective mobility. From the double layer FET devices, we observed the higher drain current more than single layer FET devices.