• Title/Summary/Keyword: Chalcogenide Glass

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The reflection characteristic of one-dimensional photonic crystal using by chalcogenide thin films (칼코게나이드 박막을 이용한 일차원 photonic crystal의 반사 특성)

  • Lee, Jung-Tae;Shin, Kyung;Yeo, Cheol-Ho;Ku, Dae-Sung;Kim, Jong-Bin;Chung, Hong-Bay
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 2002.11a
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    • pp.120-123
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    • 2002
  • In this study it had an excellent optical characteristic, it followed in the creation rate and the refractive index regulation to the ease. Chalcogenide produced the $As_{45}Se_{45}Te_{10}$ thin film and the $MgF_{2}$ thin film. It measured thin film plan simulation, and the thin film has a 1 -dimensional photonic band gap. The chalcogenide $As_{45}Se_{45}Te_{10}$ thin film was measured with the fact that it has a high refractive index (2.6~2.9). The $As_{45}Se_{45}Te_{10}$ and $MgF_{2}$ thin film, have a high refractive index and a low refractive index, it used a simulation and planed period 5-pairs structure, the result was from 500nm to 800nm. It will be able to confirm the characteristic which most of the incidence light reflects, the He-Ne (632.8nm) laser was irradiated in the thin film which stabilized the thin film. $As_{45}Se_{45}Te_{10}$ (high refractive index layer: H) and $MgF_{2}$ (low refractive index layer: L) results which plans the thin film with glass/LHLHLLHLHL/air structure, 632.8nm against transmitance, increased a lot. An application possibility with the filter against a specific wave length was confirmed.

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Structural Interpretation on the Mechanism of High $La_2S_3$ Solubility in $GeS_2-Ga_2S_3-La_2S_3$Glasses ($GeS_2-Ga_2S_3-La_2S_3$ 유리 구조 분석을 통한 $La_2S_3$ 용융성 규명)

  • Yoon, Joong-Min;Heo, Jong;Ryou, Sun-Youn
    • Journal of the Korean Ceramic Society
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    • v.34 no.8
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    • pp.870-876
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    • 1997
  • Ge-Ga-S glasses, contrary to other well-known chalcogenide glasses, show high rare-earth solubility. Raman spectra of GeS2-Ga2S3 glasses showed that two peaks at 260 cm-1 and 385 cm-1 increased in intensity with the addition of Ga2S3. These peaks are associated with the vibration of Ge-Ge bonds and edge-shared [GsS4] tetrahedra, respectively. In GeS2-Ga2S3-La2S3 glasses, the peak at 260 cm-1 decreased in intensity with addition of La2S3 and the one at 375 cm-1 due to the vibration of tetrahedra with non-bridging sulfurs increased. It indicated that La, or rare-earths in general, can easily be dissolved into the glass network as charge compensators for non-bridging sulfurs which were formed through the dissociation of Ge-Ge bonds and edge-shared [GaS4] tetrahedra. Since no such structural modification is expected in glasses as Ga-As-S, these peculiar transitions on the connection scheme in Ga-containing chalcogenide glasses seem to be playing the most important role on the enhanced rare-earth solubility.

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Research in Crystalization and Conductivity of Electricity of Ge-Se-Bi System Chalcogenide Glass (Ge-Se-Bi계 칼코게나이드 유리의 비정질 및 결정화에 따른 전기 전도도의 변화)

  • Lee, Myeong-Won;Gang, Won-Ho
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 1992.11a
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    • pp.77-81
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    • 1992
  • The purpose of this research was th evaluate conductivity of electricity of Ge-Se-Bi system Chalcogenide glass as a amorphous semiconductor by observing its dissolution and crystallization. In this experiment. Ge-Se-Bi metal powder in the rage of $Ge_{12-25}$, $Se_{65-85}$, $Bi_{2.5-15}$ was used as the sample ore. The ore was. put into a vaccous quartz tube and then melted. The condition of heat treatment was to dispose it to $1000^{\circ}C$ heat for 10 hours and then rapidly quenched it at $3834^{\circ}C$/see. The crystallization of the fused sample ripened as the change of temperature and time, after the crystal core was formell. At that time it was possible to observe the state that $Bi_2Se_3$ and $GeSe_2$ were crystallized. In the experiment of making memberance, the memberance was produced by using the previously experimented bulk sample. And decrystalization was well progressed when Ge was over 15 at %, Se was over 70 at %, and Bi was under 10 at%. As for bulk. when Ge was fixed to 20 at %, the conducting of electricity was increased as Bi gained at %. In the case of memberance, the conductivity was much more increased than that of bulk sample as the increase of at the increase of at % of Bi. In the experiment on $Ge_{20}$, $Se_{77.5}$ and $Bi_{2.5}$, the crystallization sswas most vigorous when they were kept at $330^{\circ}C$ for 4 hours.

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Properties and Crystallization Characteristics of Ge-Se-Te Glasses (Ge-Se-Te계 칼코지나이드 유리의 결정 생성 현상 및 특성)

  • Lee, Yong-Woo;Heo, Jong
    • Journal of the Korean Ceramic Society
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    • v.32 no.2
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    • pp.239-247
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    • 1995
  • Chalcogenide glasses with compositions of Ge10Se90-xTex(X=0~50 at.%) were prepared in order to investigate the effects of Te substitution on the transmission characteristics of Ge-Se glasses in the 8~12 ${\mu}{\textrm}{m}$ wavelength region. Absorption coefficients were observed to decrease with Te addition, indicating the improved transmission capabilities of Ge-Se-Te glasses as compared to binary Ge-Se glasses. XRD analysis of crystallized glasses suggested the formation of weaker Se-Te and/or Te-Te bonds with addition of Te substituting for Se in stronger Se-Se bonds. Incorporation of Te in excess of 20at% resulted in the formation of hexagonal Te phases when crystallized. It is speculated that the presence of Te-Te bonds with highly metallic bond character resulted in the enhanced crystallization tendencies of glasses. Fromation of Te-rich chains through gradual replacement of Se-Se with Se-Te and/or Te-Te bonds was further supported by decreases in glass transition and crystallization temperatures.

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Sputtering Deposition of $CuInSe_{2}$ and $CuInZnSe_{2}$ Thin Films using Mixture Binary Chalcogenide Powders

  • Wibowo, Rachmat Adhi;Guk, Jun-Pyo;Kim, Gyu-Ho
    • 한국신재생에너지학회:학술대회논문집
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    • 2007.06a
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    • pp.257-260
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    • 2007
  • In this study, $CuInSe_{2}$ (CISe) and $CuInZnSe_{2}$ (CIZSe) thin films were prepared on Corning 1737 glass by radio frequency (RF) magnetron sputtering from binary chalcogenide mixed powder targets. The targets were initially prepared by mixing appropriate weights of CuSe, InSe powder and various ZnSe contents. From the film bulk analysis result, it is observed that Zn concentration in the films increases proportionally with the addition of ZnSe in the sputtering targets. Under optimized conditions, CISe and CIZSe thin films grow as a chalcopyrite structure with strong (112), (220/204) and (312/116) reflections. Films are found to exhibit a high absorption coefficient of $10^{4}$ $cm^{-1}$. An increasing of optical band gap from 1.0 eV (CISe) to 1.25 eV (CIZSe) is found to be proportional with an increasing of Zn concentration as expected. All films have a p-type semiconductor characteristic with a carrier concentration in the order of 1014 $cm^{-3}$, a mobility about $10^{1}$ $cm^{2{\cdot}-1}{\cdot}s^{-1}$ and a resistivity at the range of $10^{2}-10^{6}$ W${\cdot}$m.

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Deformation of Amorphous GeSe2 Film under Uniaxial Pressure Applied at Elevated Temperatures

  • Jin, Byeong Kyou;Lee, Jun Ho;Yi, Jeong Han;Lee, Woo Hyung;Shin, Sang Yeol;Choi, Yong Gyu
    • Journal of the Korean Ceramic Society
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    • v.52 no.2
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    • pp.108-113
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    • 2015
  • In an effort to evaluate the practicability of an imprinting technique for amorphous chalcogenide film in Ge-based compositions, we investigate the deformation behavior of the surface of amorphous $GeSe_2$ film deposited via a thermal evaporation route according to varying static loads applied at elevated temperatures. We observe that, under these static loading conditions, crystallization tends to occur on its surface relatively more easily than in As-based $As_2Se_3$ films. As for the present $GeSe_2$ film, higher processing temperatures are required in order to make its surface reflect the given stamp patterns well; however, in this case, its surface becomes partially crystallized in the monoclinic $GeSe_2$ phase. The increased vulnerability of this amorphous $GeSe_2$ film toward surface crystallization under static loading, when compared with the $As_2Se_3$ counterpart, is explained in terms of the topological aspects of its amorphous structure.

Nanostructure of Optical Materials Doped with Rare-Earths: X-Ray Absorption Spectroscopy of Dy-Doped Ge-As-S Glass (희토류 첨가 광소재의 나노구조 : Dy 첨가 Ge-As-S 유리의 X-선 흡수 스펙트럼 분석)

  • Choi, Yong-Gyu;Song, Jay-Hyok;Shin, Yong-Beom;Chernov, Vladimir A.;Heo, Jong
    • Journal of the Korean Ceramic Society
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    • v.43 no.3 s.286
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    • pp.177-184
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    • 2006
  • Dy $L_3$-edge XANES and EXAFS spectra of chalcogenide Ge-As-S glass doped with ca. 0.2 wt% dysprosium have been investigated along with some reference Dy-containing crystals. Amplitude of the white-line peak in XANES spectrum of the glass sample turns out to be stronger than that of other reference crystals, i.e., $DY_2S_3,\;Dy_2O_3\;and\;DyBr_3$. It has been verified from the Dy $L_3$-edge EXAFS spectra that a central Dy atom is surrounded by $6.7{\pm}0.5$ sulfur atoms in its first coordination shell in the Ge-As-S glass, which is relatively smaller than 7.5 of the $Dy_2S_3$ crystal. Averaged Dy-S inter-atomic-distance of the glass ($2.78{\pm}0.01{\AA}$) also turns out to be somewhat shorter than that of the $Dy_2S_3$ crystal ($2.82{\pm}0.01{\AA}$). Such nanostructural changes occurring at Dy atoms imply there being stronger covalency of Dy-S chemical bonds in the Ge-As-S glass than in the crystal counterpart. The enhanced covalency in the nanostructural environment of $Dy^{3+}$ ions inside the glass would then be responsible for optical characteristics of the $4f{\leftrightarrow}4f$ transitions of the dopants, i.e., increase of oscillator strengths and spontaneous radiative transition probabilities.

Infrared Scanning Near-Field Optical Microscopy (IR-SNOM) Below the Diffraction Limit

  • Sanghera, J.S.;Aggarwal, I.D.;Cricenti, A.;Generossi, R.;Luce, M.;Perfetti, P.;Margoritondo, G.;Tolk, N.;Piston, D.
    • Ceramist
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    • v.10 no.3
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    • pp.55-66
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    • 2007
  • Infrared Scanning Near-field Optical Microscopy (IR-SNOM) is an extremely powerful analytical instrument since it combines IR spectroscopy's high chemical specificity with SNOM's high spatial resolution. In order to do this in the infrared, specialty chalcogenide glass fibers were fabricated and their ends tapered to generate SNOM probes. The fiber tips were installed in a modified near field microscope and both inorganic and biological samples illuminated with the tunable output from a free-electron laser located at Vanderbilt University. Both topographical and IR spectral images were simultaneously recorded with a resolution of ${\sim}50\;nm$ and ${\sim}100\;nm$, respectively. Unique spectroscopic features were identified in all samples, with spectral images exhibiting resolutions of up to ${\lambda}/60$, or at least 30 times better than the diffraction limited lens-based microscopes. We believe that IR-SNOM can provide a very powerful insight into some of the most important bio-medical research topics.

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비정질반도체 재료와 응용

  • 이정한
    • 전기의세계
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    • v.24 no.6
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    • pp.35-38
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    • 1975
  • 금속과 원소반도체의 접촉으로 이루어진 점접촉트란지스터를 출발점으로 한 P-N접합트란지스터는 4반세기동안 반도체전자 소자의 중심이었다. 이와 같은 반도체소자는 단결정반도체의 특성을 이용한 것으로 그 제작에 있어 거의 완전에 가까운 결정구조와 극도의 화학적순수성이 요구되는 것이다. 이와 같은 요구조건은 접합형 반도체소자제작에 큰 제한을 주게 된다. Gunn Diode, Impatt Diode등으로 반도체소자는 Bulk형식의 것이 각광을 받게 되었으며 MOS형식의 FET에 이르러 신기원을 이루게 되었다. 이리하여 MOS기술은 Sapphire기반을 도입함으로써 SOS기법으로 발전을 거듭하게 되었다. 그러나 정질반도체의 이용이라는 근본적 개념에서는 이탈치못하고 있다. 이상과 같은 정질반도체소자에 대응하여 반대적 입장에서 불순물농도의 영향이 적은 비정질반도체의 연구가 70년이후 미국을 중심으로 활발하게 전개되고 있다. 그 연구 및 개발결과는 2년마다 이루어지는 액체비정질반도체국제회의에서 종합되고 있다. 이 분야에서의 연구는 1968년 Ovshinsky가 비산화물 Chalcogenide glass 비정질박막에서의 빠른 응답속도의 양극대칭성 Switching 현상 발견을 계기로 신국면을 개척하게 된 것이다. 이들 비정질반도체에 대한 물성론적 흥미와 응용면에 관한 기대로부터 전도기구의 해명과 응용회로의 개발연구가 급속히 진전되고 있다.

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저가형 IR Window의 AR Coating 특성 연구

  • Han, Myeong-Su;Park, Chang-Mo;Kim, Jin-Hyeok;Sin, Gwang-Su;Kim, Hyo-Jin;Go, Hang-Ju
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 2010.06a
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    • pp.178-178
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    • 2010
  • 칼코게나이드계 재료를 사용한 비냉각 적외선 센서의 윈도우를 제작하여 그 특성을 조사하였다. 조성을 EDS로 분석한 결과 Ge-Se-Sb로 구성되어 있음을 확인하였다. 두께 2mm인 윈도우 모재를 양면 경연마한 후 코팅 설계치로 8-12um 영역에서 평균 투과도가 95.6%로 나타났다. 이온빔보조증착장치를 이용하여 Ge, ZnS, $YF_3$ 소스로 코팅한 결과 투과도는 동일파장영역에서 약 94%로 나타났다. 칼코게나이드 원재료의 투과도는 약 69%로써 12um 영역 부근에서 강한흡수를 보였다. 코팅면의 거칠기 값(Ra)은 약 1.5 nm로써 매우 매끄러운 면을 얻었으며, 단면 SEM 측정 결과 설계치와 유사한 박막 두께를 얻었다.

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