• 제목/요약/키워드: $SiO_2/Si$ interface

검색결과 593건 처리시간 0.033초

Fabrication of Hierarchical Nanostructures Using Vacuum Cluster System

  • Lee, Jun-Young;Yeo, Jong-Souk
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2012년도 제43회 하계 정기 학술대회 초록집
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    • pp.389-390
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    • 2012
  • In this study, we fabricate a superhydrophobic surface made of hierarchical nanostructures that combine wax crystalline structure with moth-eye structure using vacuum cluster system and measure their hydrophobicity and durability. Since the lotus effect was found, much work has been done on studying self-cleaning surface for decades. The surface of lotus leaf consists of multi-level layers of micro scale papillose epidermal cells and epicuticular wax crystalloids [1]. This hierarchical structure has superhydrophobic property because the sufficiently rough surface allows air pockets to form easily below the liquid, the so-called Cassie state, so that the relatively small area of water/solid interface makes the energetic cost associated with corresponding water/air interfaces smaller than the energy gained [2]. Various nanostructures have been reported for fabricating the self-cleaning surface but in general, they have the problem of low durability. More than two nanostructures on a surface can be integrated together to increase hydrophobicity and durability of the surface as in the lotus leaf [3,5]. As one of the bio-inspired nanostructures, we introduce a hierarchical nanostructure fabricated with a high vacuum cluster system. A hierarchical nanostructure is a combination of moth-eye structure with an average pitch of 300 nm and height of 700 nm, and the wax crystalline structure with an average width and height of 200 nm. The moth-eye structure is fabricated with deep reactive ion etching (DRIE) process. $SiO_2$ layer is initially deposited on a glass substrate using PECVD in the cluster system. Then, Au seed layer is deposited for a few second using DC sputtering process to provide stochastic mask for etching the underlying $SiO_2$ layer with ICP-RIE so that moth-eye structure can be fabricated. Additionally, n-hexatriacontane paraffin wax ($C_{36}H_{74}$) is deposited on the moth-eye structure in a thermal evaporator and self-recrystallized at $40^{\circ}C$ for 4h [4]. All of steps are conducted utilizing vacuum cluster system to minimize the contamination. The water contact angles are measured by tensiometer. The morphology of the surface is characterized using SEM and AFM and the reflectance is measured by spectrophotometer.

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그래핀을 베이스로 사용한 열전자 트랜지스터의 특성 (Characterization of Hot Electron Transistors Using Graphene at Base)

  • 이형규;김성진;강일석;이기성;김기남;고진원
    • 한국전기전자재료학회논문지
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    • 제29권3호
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    • pp.147-151
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    • 2016
  • Graphene has a monolayer crystal structure formed with C-atoms and has been used as a base layer of HETs (hot electron transistors). Graphene HETs have exhibited the operation at THz frequencies and higher current on/off ratio than that of Graphene FETs. In this article, we report on the preliminary results of current characteristics from the HETs which are fabricated utilizing highly doped Si collector, graphene base, and 5 nm thin $Al_2O_3$ tunnel layers between the base and Ti emitter. We have observed E-B forward currents are inherited to tunneling through $Al_2O_3$ layers, but have not noticed the Schottky barrier blocking effect on B-C forward current at the base/collector interface. At the common-emitter configuration, under a constant $V_{BE}$ between 0~1.2V, $I_C$ has increased linearly with $V_{CE}$ for $V_{CE}$ < $V_{BE}$ indicating the saturation region. As the $V_{CE}$ increases further, a plateau of $I_C$ vs. $V_{CE}$ has appeared slightly at $V_{CE}{\simeq}V_{BE}$, denoting forward-active region. With further increase of $V_{CE}$, $I_C$ has kept increasing probably due to tunneling through thin Schottky barrier between B/C. Thus the current on/off ration has exhibited to be 50. To improve hot electron effects, we propose the usage of low doped Si substrate, insertion of barrier layer between B/C, or substrates with low electron affinity.

Thin Film Adhesion and Cutting Performance in Diamond-Coated Carbide Tools

  • Jong Hee Kim;Dae Young Jung;Hee Kap Oh
    • The Korean Journal of Ceramics
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    • 제3권2호
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    • pp.105-109
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    • 1997
  • The effects of surface conditions of the C-2 cemented carbide substrate on the adhesion of diamond film were investigated. The substrates were pretreated for different times with Murakami's reagent and then the acid solution of an H2SO4-H2O2. The adhesion strength was estimated by a peeling area around the Rockwell-A indentation. The cutting performance of the diamond-coated tools was evaluated by measuring flank wears in dry turning of Al-17% Si alloy. The morphology of deposited diamond crystallites was dominated by (111) and (220) surfaces with a cubooctahedral shape. The diamond film quality was hardly affected by the surface conditions of the substrate. The variation of tool life with longer substrate etching times resulted from a compromies between the increase of film adhesion at the interface and the decrease of toughness at the substrate surface. The coated tools were mainly deteriorated by chipping and flaking of the diamond film form a lock of adhesion strength, differently from the wear phenomena of PCD tools.

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Nano-scale PMOSFET에서 Plasma Nitrided Oixde에 대한 소자 특성의 의존성 (Dependency of the Device Characteristics on Plasma Nitrided Oxide for Nano-scale PMOSFET)

  • 한인식;지희환;구태규;유욱상;최원호;박성형;이희승;강영석;김대병;이희덕
    • 한국전기전자재료학회논문지
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    • 제20권7호
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    • pp.569-574
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    • 2007
  • In this paper, the reliability (NBTI degradation: ${\Delta}V_{th}$) and device characteristic of nano-scale PMOSFET with plasma nitrided oxide (PNO) is characterized in depth by comparing those with thermally nitrided oxide (TNO). PNO case shows the reduction of gate leakage current and interface state density compared to TNO with no change of the $I_{D.sat}\;vs.\;I_{OFF}$ characteristics. Gate oxide capacitance (Cox) of PNO is larger than TNO and it increases as the N concentration increases in PNO. PNO also shows the improvement of NBTI characteristics because the nitrogen peak layer is located near the $Poly/SiO_2$ interface. However, if the nitrogen concentration in PNO oxide increases, threshold voltage degradation $({\Delta}V_{th})$ becomes more degraded by NBT stress due to the enhanced generation of the fixed oxide charges.

급속 열처리 방법에 의한 Sn 솔더 범프의 리플로와 금속간 화합물 형성 (Reflow of Sn Solder Bumps using Rapid Thermal Annealing(RTA) method and Intermetallic Formation)

  • 양주헌;조해영;김영호
    • 마이크로전자및패키징학회지
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    • 제15권4호
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    • pp.1-7
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    • 2008
  • 본 실험에서는 두가지 리플로 시스템에 따라 솔더 범프 내에 생성되는 금속간 화합물의 성장거동에 대하여 연구하였다. 산화막이 증착된 Si 기판 위에 직류 마그네트론 스퍼터링을 이용하여 Ti(50 nm), Cu($1{\mu}m$), Au(50 nm), Ti(50 nm)의 박막을 형성한 후, 전해 도금을 이용하여 $5{\mu}m$두께의 Cu 범프와 $20{\mu}m$ 두께의 Sn 범프를 형성하였다. 급속열처리장치(RTA)와 일반 리플로를 이용하여 전해 도금으로 형성된 Sn($20{\mu}m$)/Cu($5{\mu}m$) 범프를 동일한 온도에서 각각 리플로 공정을 진행한 결과, 급속열처리장치를 이용하여 리플로를 할 때, 플럭스를 사용하지 않고 범프로 형성할 수 있었으며, 솔더 계면에 형성된 금속간 화합물이 일반 리플로의 경우보다 더 얇게 형성되었다.

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3차원 실장용 TSV의 펄스전류 파형을 이용한 고속 Cu도금 충전 (High Speed Cu Filling Into TSV by Pulsed Current for 3 Dimensional Chip Stacking)

  • 김인락;박준규;추용철;정재필
    • 대한금속재료학회지
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    • 제48권7호
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    • pp.667-673
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    • 2010
  • Copper filling into TSV (through-silicon-via) and reduction of the filling time for the three dimensional chip stacking were investigated in this study. A Si wafer with straight vias - $30\;{\mu}m$ in diameter and $60\;{\mu}m$ in depth with $200\;{\mu}m$ pitch - where the vias were drilled by DRIE (Deep Reactive Ion Etching) process, was prepared as a substrate. $SiO_2$, Ti and Au layers were coated as functional layers on the via wall. In order to reduce the time required complete the Cu filling into the TSV, the PPR (periodic pulse reverse) wave current was applied to the cathode of a Si chip during electroplating, and the PR (pulse-reverse) wave current was also applied for a comparison. The experimental results showed 100% filling rate into the TSV in one hour was achieved by the PPR electroplating process. At the interface between the Cu filling and Ti/ Au functional layers, no defect, such as a void, was found. Meanwhile, the electroplating by the PR current showed maximum 43% filling ratio into the TSV in an hour. The applied PPR wave form was confirmed to be effective to fill the TSV in a short time.

A Study on the Magnetic Properties of Ion Irradiated Cu/Co Multilayer System

  • Kim, T.Y.;Chang, G.S.;Son, J.H.;Kim, S.H.;Shin, S.W.;Chae, K.H.;Sung, M.C.;Lee, J.;Jeong, K.;Lee, Y.P.;;Whang, C.N
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2000년도 제18회 학술발표회 논문개요집
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    • pp.163-163
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    • 2000
  • In this research, we used the ion irradiation technique which has an advantae in improving intentionally the properties of surface and interface in a non-equilibrium, instead of the conventional annealing method which has been known to improve the material properties in the equilibrium stat. Cu/Co multilayered films were prepared on SiN4/SiO2/Si substrates by the electron-beam evaporation for the Co layers and the thermal evaporation for the Cu layers in a high vacuum. The ion irradiation with a 80keV Ar+ was carried out at various ion doses in a high vacuum. Hysteresis loops of the films were investigated by magneto-optical polar Kerr spectroscopy at various experimental conditions. The change of atomic structure of the films before and after the ion irradiation was studied by glancing angle x-ray diffraction, and the intermixing between Co and Cu sublayers was confirmed by Rutherford backscattering spectroscopy. The surface roughness and magneto-resistance were measured by atomic force microscopy and with a four-point probe system, respectively. During the magneto-resistance measurement, we changed temperature and the direction of magnetization. From the results of experiments, we found that the change at the interfaces of the Cu/Co multilayered film induced by ion irradiation cause the change of magnetic properties. According to the change in hysteresis loop, the surface inplane component of magnetic easy axis was isotropic before the ion irradiation, but became anisotropic upon irradiation. It was confirmed that this change influences the axial behavior of magneto-resistance. Especially, the magneto-resistance varied in accordance with an external magnetic field and the direction of current, which means that magneto-resistance also shows the uniaxial behavior.

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Plasma Nitrided Oxide와 Thermally Nitrided Oxide를 적용한 NMOSFET의 Flicker Noise와 신뢰성에 대한 비교 분석 (Comparative Analysis of Flicker Noise and Reliability of NMOSFETs with Plasma Nitrided Oxide and Thermally Nitrided Oxide)

  • 이환희;권혁민;권성규;장재형;곽호영;이성재;고성용;이원묵;이희덕
    • 한국전기전자재료학회논문지
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    • 제24권12호
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    • pp.944-948
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    • 2011
  • In this paper, flicker noise characteristic and channel hot carrier degradation of NMOSFETs with plasma nitrided oixde (PNO) and thermally nitrided oxide (TNO) are analyzed in depth. Compared with NMOSFET with TNO, flicker noise characteristic of NMOSFET with PNO is improved significantly because nitrogen density in PNO near the Si/$SiO_2$ interface is less than that in TNO. However, device degradation of NMOSFET with PNO by channel hot carrier stress is greater than that with TNO although PMOSFET with PNO showed greater immunity to NBTI degradation than that with TNO in previous study. Therefore, concurrent investigation of the reliability as well as low frequency noise characteristics of NMOSFET and PMOSFET is required for the development of high performance analog MOSFET technology.

이차 열처리가 PtMn계 스핀밸브의 거대자기저항 특성에 미치는 영향 (The Second Annealing Effect on Giant Magnetoresistance Properties of PtMn Based Spin Valve)

  • 김광윤;김민정;김희중
    • 한국자기학회지
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    • 제11권2호
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    • pp.72-77
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    • 2001
  • DC 마그네트론 방식으로 제조한 PtMn계 상부층형(top) 스핀밸브 박막을 반강자성층인 PtM의 fcc (111) 구조에서 fat (111)구조 천이를 위하여 27$0^{\circ}C$에서 3 kOe의 외부자장을 가해주면서 일차적인 열처리를 한 후, 이차적으로 무자장 열처리를 하여 상온에서 자기적 특성을 조사하였다. Si/A1$_2$O$_3$ (500$\AA$)/Ta(50$\AA$)NiFe(40$\AA$)/CoFe(17$\AA$)/Cu(28$\AA$)/CoFe (30$\AA$)PtMn(200$\AA$)Ta(50$\AA$) top 스핀밸브 시료에서 자기저항비를 조사한 결과 열처리 온도가 높아질수록 자기저항비가 완만히 감소하나 325 $^{\circ}C$ 이상에서 급격히 감소하여 1 %까지 감소하는 것을 확인하였으며, 이것은 열처리 온도가 높아질수록 반강자성층과 피고정층사이의 교환 결합력이 약해지는 것에 기인하는 것으로 판단하였다. 열처리 온도 증가에 따른 교환 바이어스 자장은 325 $^{\circ}C$ 이상에서 급격히 감소하였고, 고정층과 자유층사이의 상호 결합 세기(interlayer coupling field, $H_{int}$)는 $325^{\circ}C$ 이상에서 크게 증가하였는데, 이것은 열처리 온도가 증가함에 다라 Mn의 상호 확산(inter-diffusion)dl 증가하여 계면에서의 거칠기(roughness)가 커지기 때문이라고 생각하였다. 이와 같은 결과에서 PtMn 스핀밸브의 급격한 자기적 특성변화가 일어나는 열처리 온도가 PtMn계 스핀밸브 박막의 블로킹 온도(blocking temperature, $T_b$)와 잘 일치함을 호가인할 수 있었다.

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Irradiation enduced In-plane magnetization in Fe/MgO/Fe/Co multilayers

  • Singh, Jitendra Pal;Lim, Weon Cheol;Song, Jonghan;Kim, Jaeyeoul;Asokan, K.;Chae, Keun Hwa
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2015년도 제49회 하계 정기학술대회 초록집
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    • pp.188.1-188.1
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    • 2015
  • For present investigation Fe/MgO/Fe/Co multilayer stack is grown on Si substrate using e-beam evaporation in ultrahigh vacuum. This stack is irradiated perpendicularly by 120 MeV $Ag^{8+}$ at different fluences ranging from $1{\times}10^{11}$ to $1{\times}10^{13}ions/cm^2$ in high vacuum using 15UD Pelletron Accelerator at Inter University Accelerator Centre, New Delhi. Magnetic measurements carried out on pre and post irradiated stacks show significant changes in the shape of perpendicular hysteresis which is relevant with previous observation of re-orientation of magnetic moment along the direction of ion trajectory. However increase in plane squareness may be due to the modification of interface structure of stacks. X-ray reflectivity measurements show onset of interface roughness and interface mixing. X-ray diffraction measurements carried out using synchrotron radiation shows amorphous nature of MgO and Co layer in the stack. Peak corresponding body centered Fe [JCPDS-06-0696] is observed in X-ray diffraction pattern of pre and post irradiated stacks. Peak broadening shows granular nature of Fe layer. Estimated crystallite size is $22{\pm}1nm$ for pre-irradiated stack. Crystallite size first increases with irradiation then decreases. Structural quality of these stacks was further studied using transmission electron microscopic measurements. Thickness from these measurements are 54, 36, 23, 58 and 3 nm respectively for MgO, Fe, MgO, Fe+Co and Au layers in the stack. These measurements envisage poor crystallinity of different layers. Interfaces are not clear which indicate mixing at interface. With increase fluence mixing and diffusion was increased in the stack. X-ray absorption spectroscopic measurements carried out on these stacks show changes of Fe valence state after irradiation along with change of O(2p)-metal (3d) hybridized state. Valence state change predicts oxide formation at interface which causes enhanced in-plane magnetization.

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