• Title/Summary/Keyword: In/Si(111)

Search Result 556, Processing Time 0.03 seconds

Structural properties of GeSi/Si heterojunction compound semiconductor films by using SPE (SPE법을 통해 형성된 $Ge_xSi_{1-x}/Si$이종접합 화합물 반도체의 결정분석)

  • 안병열;서정훈
    • Journal of the Korea Institute of Information and Communication Engineering
    • /
    • v.4 no.3
    • /
    • pp.713-719
    • /
    • 2000
  • In order to Prepare the$Ge_xSi_{1-x}/Si$(111) heterosructure by solid phase epitaxy (SPE), about 1000A of Au and about 1000A Ge were sequentially deposited on the Si(111) substrate. The resulting Ge/Au/Si(111) samples were isochronically annealed in the high vacuum condition. The behaviors of Au and Ge during thermal annealing and the structural Properties of $Ge_xSi_{1-x}$ films were characterized by Auger electron spectroscopy (AES), X-ray diffraction (XRD) and high resolution transmission electron microscopy (TEM). The a-Ge/Au/Si(111) structure was converted to the Au/GeSi/Si(111) structure. Defects such as stacking faults, point defects and dislocations were found at the GeXSil-X(111) interface, but the film was grown epitaxially with the matching face relationship of $Ge_xSi_{1-x}/$(111)/Si(111). Twin crystals were also found in the $Ge_xSi_{1-x}/$(111) matrix.

  • PDF

In situ Epitaxial Growth of the $TiSi_2$ on si(111)-7$\times$7 Substrate by Codeposition (동시증착에 의한 Si(111)-7$\times$7 기판 위에 $TiSi_2$ 에피택셜 성장)

  • 최치규;류재연;오상식;염병렬;박형호;조경익;이정용;김건호
    • Journal of the Korean Vacuum Society
    • /
    • v.3 no.4
    • /
    • pp.405-413
    • /
    • 1994
  • 초고진공에서 기판 Si(111)-7$\times$7 위에 Ti:Si 또는 1:2의 조성비로 Ti와 Si을 동시증착한 후 in situ 열처리하여 TiSi2 박막을 에피택셜 성장시켰다 XRD와 XPS 분석결과 동시증착된 혼합 층에서 C49-TiSi2 박막의 성장은 핵형성에 의함을 확인하였으며 양질의 C49-TiSi2 박막은 Ti를 증착한후 Ti와 Si를 동시 증착한 (Ti+2Si)/(Ti)/Si(111)-7$\times$7구조의 시료를 초고진공에서 50$0^{\circ}C$에서 열처리하여 얻을수 있었다. 형성된 C49-TiSi2/Si(111)의 계면은 깨끗하였고 HRTEM 분석 결과 C49-TiSi2\ulcornerSi(111)의 계면은 약 10。 의 편의를 가지면서 TiSi2[211]∥Si[110] TiSi2(031)/Si(111) 의 정합성을 가졌으며 시료의 전 영 역에 에피택셜 성장되었다.

  • PDF

Growth of Ti on Si(111)-)-$7{\times}7$ Surface and the Formation of Epitaxial C54 $TiSi_2$ on Si(111) Substrate (Si(111)-$7{\times}7$ 면에서 Ti 성장과 C54 $TiSi_2$/Si(111) 정합 성장에 관하여)

  • Kun Ho Kim;In Ho Kim;Jeoung Ju Lee;Dong Ju Seo;Chi Kyu Choi;Sung Rak Hong;Soo Jeong Yang;Hyung Ho Park;Joong Hwan Lee
    • Journal of the Korean Vacuum Society
    • /
    • v.1 no.1
    • /
    • pp.67-72
    • /
    • 1992
  • The growth of Ti on Si(111)-$7{\times}7$ and the formation of epitaxial C54 $TiSi_2$ were investigated by using reflection high energy electron diffraction(RHEED) and high resolution transmission electron microscopy(HRTEM). Polycrystalline Ti layer is grown on the amorphous Ti-Si interlayer which is formed at the Ti/Si interface by Ti deposition on Si(111)-$7{\times}7$ at room temperature (RT). HRTEM lattice image and transmission electron diffraction(TED) showed that epitaxial C54 $TiSi_2$ grown on Si substrate with 160 ML of Ti on Si(111)-$7{\times}7$ surface at RT, followed by annealing at $750^{\circ}C$ for 10 min in UHV. Thin single crystal Si overlayer with [111] direction is grown on $TiSi_2$ surface when $TiSi_2$/Si(111) is annealed at ${\sim}900^{\circ}C$ in UHV, which was confirmed by Si(111)-$7{\times}7$ superstructure.

  • PDF

Formation of GMR Metallic Multilayers with In-Plane Uniaxial Magnetic Anisotropy (면내 일축 이방성을 갖는 GMR 금속다층막의 형성)

  • 송용진;김형준;이병일;주승기
    • Journal of the Korean Magnetics Society
    • /
    • v.6 no.5
    • /
    • pp.329-333
    • /
    • 1996
  • We have studied the magnetoresistance and the magnetic anisotropy of Cu/(NiFe/Ni/NiFe) metallic multi layers grown on Si(100), Si(111), $4^{\circ}\;tilt-cut\;Si(111)$ or glass substrate. When the multilayer was grown on $4^{\circ}\;tilt-cut\;Si(111)$ with $50\;{\AA}$ of Cu underlayer, an in-plane uniaxial anisotropy was observed. On the other substrates such as Si(100), Si(111) or glass with Cu underlayer, however, no appreciable anisotropy was shown. The multilayer grown with NiFe or Ni underlayer or without underlayer did not show any arnsotropy even on $4^{\circ}\;tilt-cut\;Si(111)$. When $10\;{\AA}$ of NiFe was deposited prior to the Cu underlayer, the anisotropy in Cu/(NiFe/Ni/NiFe) multilayer disappeared.

  • PDF

Characterization of GaN epitaxial layer grown on nano-patterned Si(111) substrate using Pt metal-mask (Pt 금속마스크를 이용하여 제작한 나노패턴 Si(111) 기판위에 성장한 GaN 박막 특성)

  • Kim, Jong-Ock;Lim, Kee-Young
    • Journal of the Microelectronics and Packaging Society
    • /
    • v.21 no.3
    • /
    • pp.67-71
    • /
    • 2014
  • An attempt to grow high quality GaN on silicon substrate using metal organic chemical vapor deposition (MOCVD), herein GaN epitaxial layers were grown on various Si(111) substrates. Thin Platinum layer was deposited on Si(111) substrate using sputtering, followed by thermal annealing to form Pt nano-clusters which act as masking layer during dry-etched with inductively coupled plasma-reactive ion etching to generate nano-patterned Si(111) substrate. In addition, micro-patterned Si(111) substrate with circle shape was also fabricated by using conventional photo-lithography technique. GaN epitaxial layers were subsequently grown on micro-, nano-patterned and conventional Si (111) substrate under identical growth conditions for comparison. The GaN layer grown on nano-patterned Si (111) substrate shows the lowest crack density with mirror-like surface morphology. The FWHM values of XRD rocking curve measured from symmetry (002) and asymmetry (102) planes are 576 arcsec and 828 arcsec, respectively. To corroborate an enhancement of the growth quality, the FWHM value achieved from the photoluminescence spectra also shows the lowest value (46.5 meV) as compare to other grown samples.

Formation of $CoSi_2$ Film and Double Heteroepitaxial Growth of $Si/epi-CoSi_2/Si$(111) by Solid Phase Epitaxy (고상 에피택시에 의한 초박막 $CoSi_2$ 형성과 $Si/epi-CoSi_2/Si$(111)의 이중헤테로 에피택셜 성장)

  • Choi, Chi-Kyu;Kang, Min-Sung;Moon, Jong;Hyun, Dong-Geul;Kim, Kun-Ho;Lee, Jeong-Yong
    • Korean Journal of Materials Research
    • /
    • v.8 no.2
    • /
    • pp.165-172
    • /
    • 1998
  • Epitaxial ultrathin films of $CoSi_2$ and double heteroepitaxial structure of Si/$CoSi_2$/Si(lll) were prepared on Si(111)-$7\times{7}$ substrate by in situ solid-phase epitaxy in a ultrahigh vacuum(LHV). The phase, chemical composition, crystallinity, and the microsructure of the Si/$CoSi_2$/Si(lll) interface were investigated by 2-MeV $^4He^{++}$ ion backscattering spectrometry, X-ray diffraction, and high-resolution transmission electron microscopy. The growth mode of the Co film was the Stransky-Krastanov type with texture when the substrate temperature was room temperature. A-type $CoSi_2$ ultrathin film was grown by deposition of about 50A Co on Si(ll1)-$7\times{7}$ substrate followed by in situ annealing at $700^{\circ}C$ for 10 min. The matching face relationships were $CoSi_2$[110]//Si[110] and $CoSi_2$(002)//Si(002) with no misorientation angle. The A-type $CoSi_2$/Si(lll) interface was abrupt and coherent. The best epi-Si/epi-$CoSi_2$2(A-type)/Si(lll) structure was obtained by deposition of Si film on the CoSii at $500^{\circ}C$ followed by in situ annealing at $700^{\circ}C$ for 10 min in UHV.

  • PDF

Initial oxidation of the alkali metal-adsorbed Si(111) surface (알칼리금속이 흡착된 Si(111)$7\times7$ 계의 초기 산화 과정 연구)

  • 황찬국;안기석;김정선;박래준;이득진;장현덕;박종윤;이순보
    • Journal of the Korean Vacuum Society
    • /
    • v.6 no.2
    • /
    • pp.159-164
    • /
    • 1997
  • We have studied initial oxidation of the alkali metal(AM)/Si(111) surface using X-ray photoelectron spectroscopy(XPS) and reflection high energy electron diffraction(RHEED) at room temperature(RT) and high temperature(HT)(300~50$0^{\circ}C$). The oxidation of the Si(111)7$\times$7 surface was promoted by the adsorption of 1 momolayer(ML) AM, whereas no promotion occurred for submonolayer(<0.5 ML) adsorbed Si(111)7$\times$7 surface at RT. O Is core level spectra were measured with increasing oxygen exposure. It was found that the oxygen adsorbed on the Si(111)7$\times$7-AM surface have two different bond configuration, Si-O and Am-O, respectively. From these results, we discussed the role of AM-O bonding in the promoted oxidation. At HT(300~50$0^{\circ}C$), the AM-adsorbed surface became very inactive with the structural transformation to the 3$\times$1-AM. We present the results of the oxidation of the Si(111)3$\times$1-AM(Na, K, Cs) surface.

  • PDF

EC-STM Studies on Electrochemical Preparation of Si(111)-H Surfaces (Si(111)-H 표면의 전기화학적 제조에 관한 전기화학적 주사터널링현미경법 연구)

  • Bae, Sang-Eun;Lee, Chi-Woo
    • Journal of the Korean Electrochemical Society
    • /
    • v.5 no.3
    • /
    • pp.111-116
    • /
    • 2002
  • Electrochemical scanning tunneling microscopy was employed to study the evolution of surface morphology during electrochemical preparation of Si(111)-H from Si(111) oxide. Anodic dark current of cyclic voltammogram in 0.2M $NH_4F$ solution (pH 4.7) decreased as the number of cycles increased and remained nearly constant after the second cycle. Then, the Si(111) oxide was entirely stripped, which was followed by H termination on the Si(111) surface. Hydrides at kink and step sites were etched more rapidly than on the terrace, which remained triangle pits with [112] oriented steps where existed stable monohydride. Then, triangle pits deepened. During chronomamperometry at 0.4V anodic dark current shoulder appeared and decreased slowly, indicated the stripping of Si(111) oxide and the formation of stable (112) oriented steps with monohydride. Additionally, the etching mechanism of Si(111)-H in 0.2M $NH_4F(pH 4.7)$ solution at +0.4V was discussed.

Growth and Structural Properties of Fe Thin Films Electrodeposited on n-Si(111) (n-Si(111) 기판 위에 전기증착에 의한 Fe 박막의 성장과 구조적 특성)

  • Kim Hyun-Deok;Park Kyeong-Won;Lee Jong-Duk
    • Journal of the Korea Institute of Information and Communication Engineering
    • /
    • v.10 no.9
    • /
    • pp.1663-1670
    • /
    • 2006
  • Single crystal Fe thin films were grown directly onto n-Si(111) substrates by pulsed electrodeposition. Cyclic Voltammogram(CV) indicated that the $Fe^{2+}/n-Si(111)$ interface shows a good diode behavior by forming a Schottky barrier. From Mott-Schottky (MS) relation, it is found that the flat-band potential of n-Si(111) substrate and equilibrium redox potential of $Fet^{2+}$ ions are -0.526V and -0.316V, respectively. The nucleation and growth kinetics at the initial reaction stages of Fe/n-Si(111) substraste was studied by current transients. Current transients measurements have indicated that the deposition process starts via instantaneous nucleation and 3D diffusion limited growth. After the more deposition, the deposition flux of Fe ions was saturated with increase of deposition time. from the as-deposited sample obtained using the potential pulse of 1.4V and 300Hz, it is found that Fe nuclei grows to three dimensional(3D) islands with the average size of about 100nm in early deposition stages. As the deposition time increases, the sizes of Fe nuclei increases progressively and by a coalescence of the nuclei, a continuous Fe films grow on the Si surface. In this case, the Fe films show a highly oriented columnar structure and x-ray diffraction patterns reveal that the phase ${\alpha}-Fe$ grows on the n-Si(111) substrates.

Growth of SiC film on SiNx/Si Structure (SiNx/Si 구조를 이용한 SiC 박막성장)

  • Kim, Gwang-Cheol;Park, Chan-Il;Nam, Gi-Seok;Im, Gi-Yeong
    • Korean Journal of Materials Research
    • /
    • v.10 no.4
    • /
    • pp.276-281
    • /
    • 2000
  • Silicon carbide(SiC) films were grown on modified Si(111) surface with a SiNx in the NH$_3$surrounding. Thickness of SiC films was decreased with increasing of the nitridation time. Also, voids having crystal defects were removed at interface of SiC/Si according to growth parameters. SiC films were grown on SiNx/Si substrate of 100, 300 and 500nm thickness. SiC films were deposited along [111] direction and columnar grains of SiC crystal. The void-free film was observed in the interface of SiC/SiNx. This result suggests that fabrication of SiC devices are applied to SiNx replacing silicon oxide in SOI structure.

  • PDF