• 제목/요약/키워드: Field effect transistors (FETs)

검색결과 88건 처리시간 0.025초

Electrical transport characteristics of deoxyribonucleic acid conjugated graphene field-effect transistors

  • Hwang, J.S.;Kim, H.T.;Lee, J.H.;Whang, D.;Hwang, S.W.
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2011년도 제40회 동계학술대회 초록집
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    • pp.482-483
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    • 2011
  • Graphene is a good candidate for the future nano-electronic materials because it has excellent conductivity, mobility, transparency, flexibility and others. Until now, most graphene researches are focused on the nano electronic device applications, however, biological application of graphene has been relatively less reported. We have fabricated a deoxyribonucleic acid (DNA) conjugated graphene field-effect transistor (FET) and measured the electrical transport characteristics. We have used graphene sheets grown on Ni substrates by chemical vapour deposition. The Raman spectra of graphene sheets indicate high quality and only a few number of layers. The synthesized graphene is transferred on top of the substrate with pre-patterned electrodes by the floating-and-scooping method [1]. Then we applied adhesive tapes on the surface of the graphene to define graphene flakes of a few micron sizes near the electrodes. The current-voltage characteristic of the graphene layer before stripping shows linear zero gate bias conductance and no gate operation. After stripping, the zero gate bias conductance of the device is reduced and clear gate operation is observed. The change of FET characteristics before and after stripping is due to the formation of a micron size graphene flake. After combined with 30 base pairs single-stranded poly(dT) DNA molecules, the conductance and gate operation of the graphene flake FETs become slightly smaller than that of the pristine ones. It is considered that DNA is to be stably binding to the graphene layer due to the ${\pi}-{\pi}$ stacking interaction between nucleic bases and the surface of graphene. And this binding can modulate the electrical transport properties of graphene FETs. We also calculate the field-effect mobility of pristine and DNA conjugated graphene FET devices.

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Study of Electron Injection of Pentacene Field Effect Transistor with Au Electrodes by C-V and SHG Measurements

  • Lim, Eun-Ju;Manaka, Takaaki;Tamura, Ryosuke;Ohshima, Yuki;Iwamoto, Mitsumasa
    • Transactions on Electrical and Electronic Materials
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    • 제9권4호
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    • pp.151-155
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    • 2008
  • Using pentacene field effect transistors (FETs) with Au source and drain electrodes, electron injection from the Au electrodes into the pentacene was investigated. The capacitance-voltage (C-V) and optical second harmonic generation (SHG) measurements were employed. Electron injection from the Au electrodes was suggested by the hysteresis behavior with the C-V characteristics and slowly decaying SHG signal under DC biasing, A mechanism of hole-injection assisted by trapped electrons is proposed. To confirm electron injection process, light-emitting behavior under the application of AC applied voltage was observed.

Enhanced Photoresponse of Plasmonic Terahertz Wave Detector Based on Silicon Field Effect Transistors with Asymmetric Source and Drain Structures

  • Ryu, Min Woo;Kim, Sung-Ho;Kim, Kyung Rok
    • JSTS:Journal of Semiconductor Technology and Science
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    • 제13권6호
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    • pp.576-580
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    • 2013
  • We investigate the enhanced effects of asymmetry ratio variations of the source and drain area in silicon (Si) field-effect transistor (FET). Photoresponse according to the variation of asymmetry difference between the width of source and drain are obtained by using the plasmonic terahertz (THz) wave detector simulation based on technology computer-aided design (TCAD) with the quasi-plasma 2DEG model. The simulation results demonstrate the potential of Si FETs with asymmetric source and drain structures as the promising plasmonic THz detectors.

핫픽업 전사기술을 이용한 고성능 WSe2 기반 전계효과 트랜지스터의 제작 (High-performance WSe2 field-effect transistors fabricated by hot pick-up transfer technique)

  • 김현호
    • 접착 및 계면
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    • 제21권3호
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    • pp.107-112
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    • 2020
  • 원자층 두께의 전이금속 칼코겐화합물(transition-metal dichalcogenide, TMD) 기반 반도체 소재는 그래핀과 비슷한 구조의 이차원구조를 지니는 소재로서 조절 가능한 밴드갭 뿐만 아니라 우수한 유연성, 투명성 등 다양한 장점으로 인해 다양한 미래사회의 전자소자에 활용될 수 있는 소재로서 각광받고 있다. 하지만 이러한 TMD 소재들은 수분과 산소에 매우 취약하다는 단점 때문에 대기안정성을 해결할 수 있는 다양한 시도가 이루어지고 있다. 본 연구에서는 핫픽업 전사기술을 이용하여 TMD 반도체 소재 중 하나인 WSe2 와 이차원 절연체 h-BN와의 수직 헤테로 구조를 제작하여 WSe2의 대기 안정성을 향상시키기 위한 연구를 수행하였으며, h-BN/WSe2 구조를 활용하여 WSe2 기반 고성능 전계효과 트랜지스터 제작에 대한 연구를 수행하였다. 제작된 소자의 전기적 특성을 분석한 결과, h-BN에 의해 표면이 안정화된 WSe2 기반 소자는 대기안정성 뿐만 아니라 150 ㎠/Vs의 상온 정공 이동도, 3×106의 온/오프 전류비, 192 mV/decade의 서브문턱스윙 등 우수한 전기적 특성을 갖는다는 것 또한 확인할 수 있었다.

ZnO 나노선 - Au 나노입자 하이브리드 메모리 소자 (A ZnO nanowire - Au nanoparticle hybrid memory device)

  • 김상식;염동혁;강정민;윤창준;박병준;김기현;정동영;김미현;고의관
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 2007년도 하계학술대회 논문집 Vol.8
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    • pp.20-20
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    • 2007
  • Nanowire-based field-effect transistors (FETs) decorated with nanoparticles have been greatly paid attention as nonvolatile memory devices of next generation due to their excellent transportation ability of charge carriers in the channel and outstanding capability of charge trapping in the floating gate. In this work, top-gate single ZnO nanowire-based FETs with and without Au nanoparticles were fabricated and their memory effects were characterized. Using thermal evaporation and rapid thermal annealing processes, Au nanoparticles were formed on an $Al_2O_3$ layer which was semi cylindrically coated on a single ZnO nanowire. The family of $I_{DS}-V_{GS}$ curves for the double sweep of the gate voltage at $V_{DS}$ = 1 V was obtained. The device decorated with nanoparticles shows giant hysterisis loops with ${\Delta}V_{th}$ = 2 V, indicating a significant charge storage effect. Note that the hysterisis loops are clockwise which result from the tunneling of the charge carriers from the nanowire into the nanoparticles. On the other hand, the device without nanoparticles shows a negligible countclockwise hysterisis loop which reveals that the influence of oxide trap charges or mobile ions is negligible. Therefore, the charge storage effect mainly comes from the nanoparticles decorated on the nanowire, which obviously demonstrates that the top-gate single ZnO nanowire-based FETs decorated with Au nanoparticles are the good candidate for the application in the nonvolatile memory devices of next generation.

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무전해 식각법으로 합성한 Si 나노와이어 Field Effect Transistor 유연소자의 특성 (Electrical Properties of Flexible Field Effect Transistor Devices Composed of Si Nanowire by Electroless Etching Method)

  • 이상훈;문경주;황성환;이태일;명재민
    • 한국재료학회지
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    • 제21권2호
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    • pp.115-119
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    • 2011
  • Si Nanowire (NW) field effect transistors (FETs) were fabricated on hard Si and flexible polyimide (PI) substrates, and their electrical characteristics were compared. Si NWs used as channels were synthesized by electroless etching method at low temperature, and these NWs were refined using a centrifugation method to get the NWs to have an optimal diameter and length for FETs. The gate insulator was poly(4-vinylphenol) (PVP), prepared using a spin-coating method on the PI substrate. Gold was used as electrodes whose gap was 8 ${\mu}m$. These gold electrodes were deposited using a thermal evaporator. Current-voltage (I-V) characteristics of the device were measured using a semiconductor analyzer, HP-4145B. The electrical properties of the device were characterized through hole mobility, $I_{on}/I_{off}$ ratio and threshold voltage. The results showed that the electrical properties of the TFTs on PVP were similar to those of TFTs on $SiO_2$. The bending durability of SiNWs TFTs on PI substrate was also studied with increasing bending times. The results showed that the electrical properties were maintained until the sample was folded about 500 times. But, after more than 1000 bending tests, drain current showed a rapid decrease due to the defects caused by the roughness of the surface of the Si NWs and mismatches of the Si NWs with electrodes.

DNA 템플릿을 활용한 전이금속 칼코겐화합물 트랜지스터 기반 바이오센서 연구

  • 오애리;강동호;박진홍
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2015년도 제49회 하계 정기학술대회 초록집
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    • pp.213.1-213.1
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    • 2015
  • Field effect transistors (FETs)를 기반으로 한 바이오센서는 빠른 응답속도, 저비용, label-free 등을 이유로 각광받고 있다. 그러나 3D 구조를 기반으로 한 FETs 바이오센서의 낮은 sensitivity의 한계점을 지니며, 이를 극복하기 위해 1D 구조의 나노튜브 등을 활용하였으나 여전히 높은 sensitivity의 확보는 힘들다. 최근에는 이러한 문제점을 극복하기 위해 이차원 반도체 물질 중 하나인 Transition metal dichalcogenide (TMD)를 이용하여, 700 이상의 sensitivity를 지니는 pH센서 및 100 이상의 sensitivity를 지니는 바이오센서가 보고되었다. 하지만 이보다 더 높은 정확성 및 반응성을 높이기 위한 연구는 부족한 실정이다. 우리는 DNA 템플릿을 이용하여, TMD FET 기반 pH 및 바이오센서의 반응성을 극대화시키는 연구를 선보인다. DNA는 7~8정도의 유전상수 (K)를 가지는 물질로 기존 $SiO_2$(K=3.9)보다 높은 유전상수를 가지며 두께를 0.7 nm로 매우 얇게 형성할 수 있는 장점이 있다. 이는 FET 기반 바이오센서의 표면 캐패시턴스를 높여 sensitivity를 극대화할 수 있으며, 기존에 사용된 high-k 기반 바이오센서와 비교하여도 약 10배 이상의 sensitivity 향상을 노릴 수 있다. 또한, TMD 물질로 우리는 $WSe_2$를 선택하였으며, pH 용액의 receptor로써 우리는 3-Aminopropyltriethoxysilane (APTES)를 활용하였고, 템플릿으로 사용된 DNA는 DX tile 및 Ring type의 두 가지를 사용하였다. 추가로, DNA의 phosphate backbone을 중성화시키고 DNA의 base pairing의 charge 안정화를 위해 구리 이온($Cu^{2+}$) 및 란타넘족($Tb^{3+}$)을 추가하였다. 완성된 바이오센서의 pH 센싱을 위해 우리는 pH 6,7,8의 표준 용액을 사용하였으며, 재현성 및 반복성의 확인하였다.

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실리콘 나노선 트렌지스터 양자 효과의 2차원 시뮬레이션 (2D-Simulation of Quantum Effects in Silicon Nanowire Transistor)

  • 황민영;최창용;구상모
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 2009년도 하계학술대회 논문집
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    • pp.132-132
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    • 2009
  • A 2D-simulation using a quantum model of silicon nanowire (SiNW) field-effect transistors (FETs) have been performed by the effective mass theory. We have investigated very close for real device analysis, so we used to the non-equilibrium Green's function (NEGF) and the density gradient of quantum model. We investigated I-V characteristics curve and C-V characteristics curve of the channel thickness from 5nm to 200nm. As a result of simulation, even higher drain current in SiNW using a quantum model was observed than in SiNW using a non-quantum model. The reason of higher drain current can be explained by the quantum confinement effect.

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Design of Next Generation Amplifiers Using Nanowire FETs

  • Hamedi-Hagh, Sotoudeh;Oh, Soo-Seok;Bindal, Ahmet;Park, Dae-Hee
    • Journal of Electrical Engineering and Technology
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    • 제3권4호
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    • pp.566-570
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    • 2008
  • Vertical nanowire SGFETs(Surrounding Gate Field Effect Transistors) provide full gate control over the channel to eliminate short channel effects. This paper presents design and characterization of a differential pair amplifier using NMOS and PMOS SGFETs with a 10nm channel length and a 2nm channel radius. The amplifier dissipates $5{\mu}W$ power and provides 5THz bandwidth with a voltage gain of 16, a linear output voltage swing of 0.5V, and a distortion better than 3% from a 1.8V power supply and a 20aF capacitive load. The 2nd and 3rd order harmonic distortions of the amplifier are -40dBm and -52dBm, respectively, and the 3rd order intermodulation is -24dBm for a two-tone input signal with 10mV amplitude and 10GHz frequency spacing. All these parameters indicate that vertical nanowire surrounding gate transistors are promising candidates for the next generation high speed analog and VLSI technologies.

다층 양자우물구조 광 변조기와 전계효과 트랜지스터를 사용한 광 송/수신기회로의 SPICE 모사 (SPICE Simulation of All-Optical Transmitter/Receiver Circuits Configured with MQW Optical Modulators and FETs)

  • 이유종
    • 한국정보통신학회:학술대회논문집
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    • 한국해양정보통신학회 1999년도 춘계종합학술대회
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    • pp.420-424
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    • 1999
  • 전계효과 트랜지스터와 광 다이오우드 및 다층 양자우물구조 광 변조기로 구성되는 광 스위치 회로와 몇 가지 전광 송/수신기 회로(all-optical transmitter/receiver circuits)에 대하여 시변 천이 동작 특성을 SPICE를 사용 모사한 결과를 기술하였다. 본 모사 실험에서 광 변조기 소자의 수광 창의 크기는 20 $\mu\textrm{m}$ $\times$ 20 $\mu\textrm{m}$으로 고려하였고 사용된 FET 소자의 게이트 폭은 100 $\mu\textrm{m}$이며 전달컨덕턴스 값은 측정된 소자 특성에서 55 mS/mm로 사용되었다. 모사 결과 광 논리소자의 고속 동작을 위해서는 소자의 크기를 줄이며 입력 광 다이오우드의 responsivity가 최대값을 가지는 바이어스점에 동작하도록 설계하고, 짧고 강한 세기의 광선을 입력 광 신호로 사용해야 함을 알 수 있었다.

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