• 제목/요약/키워드: Energy Band Structure

검색결과 531건 처리시간 0.029초

Structural and Optical Properties of CuInS2 Thin Films Fabricated by Electron-beam Evaporation

  • Jeong, Woon-Jo;Park, Gye-Choon;Chung, Hae-Duck
    • Transactions on Electrical and Electronic Materials
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    • 제4권1호
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    • pp.7-10
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    • 2003
  • Single phase CuInS$_2$ thin film with the strongest diffraction peak (112) at diffraction angle (2$\theta$) of 27.7$^{\circ}$ and the second strongest diffraction peak (220) at diffraction angle (2$\theta$) of 46.25$^{\circ}$was well made with chalcopyrite structure at substrate temperature of 70$^{\circ}C$. annealing temperature of 250$^{\circ}C$, annealing time of 60 min. The CuInS$_2$ thin film had the greatest grain size of 1.2 Um when the Cu/In composition ratio of 1.03, where the lattice constant of a and c were 5.60${\AA}$ and 11.12${\AA}$, respectively. The Cu/In stoichiometry of the single-phase CuInS$_2$thin films was from 0.84 to 1.3. The film was p-type when tile Cu/In ratio was above 0.99 and was n-type when the Cu/In was below 0.95. The fundamental absorption wavelength, absorption coefficient and optical band gap of p-type CuInS$_2$ thin film with Cu/In=1.3 were 837nm, 3.OH 104 cm-1 and 1.48 eV, respectively. The fundamental absorption wavelength absorption coefficient and optical energy band gap of n-type CuInS$_2$ thin film with Cu/In=0.84 were 821 nm, 6.0${\times}$10$^4$cm$\^$-1/ and 1.51 eV, respectively.

X-ray Crystal Structure and Luminescence Properties of Pd(II) and Pt(II) Complexes with Dithiopyrrole

  • Kang, Jun-Gill;Cho, Dong-Hee;Park, Changmoon;Kang, Sung Kwon;Kim, In Tae;Lee, Sang-Woo;Lee, Ha-Hyeong;Lee, Young-Nam;Lim, Dae-Won;Lee, Sung-Jae;Kim, Sung-Ho;Bae, Young-Ju
    • Bulletin of the Korean Chemical Society
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    • 제29권3호
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    • pp.599-603
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    • 2008
  • The complexes Pd(nbmtp)Cl2 and Pt(nbmtp)Cl2 (nbmptp = 1-nonyl-3,4-bis(methylthio)pyrrole) were prepared and their x-ray structures were determined at room temperature. The four-coordinated metal unit and the pyrrole ring formed a nearly planar geometry. The free ligand dissolved in CH2Cl2 produced two luminescence bands associated with the lone-pair electron of S (l max = 525 nm) and the pyrrole p electron (l max = 388 nm). When the two complexes were dissolved in CH2Cl2, these two luminescence bands were also observed, although the low-energy band was blueshifted. For the crystalline Pt(II) complex, only the strong charge transfer band (l max = 618 nm) from the d* orbital of Pt resulted from excitation of the lone-pair electron of S.

MnO2 조촉매가 코팅된 GaN 광전극의 광전기화학적 특성 (MnO2 co-catalyst effect on Photoelectrochemical Properties of GaN Photoelectrode)

  • 김하성;배효정;강성주;하준석
    • 마이크로전자및패키징학회지
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    • 제23권4호
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    • pp.113-117
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    • 2016
  • 수소를 생산하는 방법 중 하나로, 광전기화학적(photoelectrochemical; PEC) 물 분해 시스템은 높은 이론적 효율을 가진 친환경적이고 경제적인 방법이다. 광전극으로서 질화갈륨(gallium nitride; GaN)은 내화학성이 좋고 밴드갭이 물의 산화환원준위($V_{redox}=1.23$ V vs. SHE)를 포함하여 외부 전압 없이 수소를 생산할 수 있는 시스템을 구축할 수 있다. 그러나 이때 발생하는 높은 산소 발생 과전압은 시스템의 반응 효율을 저하시킨다. 산소 발생 과전압을 줄이기 위한 방법으로 광전극에 조촉매를 이용하는 방법이 많이 알려져 있다. 본 연구에서는 GaN 광전극에 입자 형태의 이산화망간(manganese dioxide; $MnO_2$)을 조촉매로 도입하여 PEC 시스템의 특성을 분석하고자 한다. $MnO_2$가 광전극에 잘 형성되었는지를 확인하기 위하여 표면분석을 수행하였고, potentiostat(PARSTAT4000)을 이용해 PEC 특성을 분석해 평가하였다. $MnO_2$가 코팅됨에 따라 flat-band potential($V_{fb}$)과 onset voltage($V_{onset}$)가 각각 음의 방향으로 0.195 V, 0.116 V 이동하는 것이 확인되었다. 광전류밀도 값에 대해서도 $MnO_2$ 코팅 샘플이 더 높게 나타나며, 시간에 따른 광전류의 저하도 개선되었다. 이로부터 $MnO_2$이 조촉매로서 효과가 있음을 확인하였고, PEC 시스템 전반에 걸쳐 효율 향상에 기여할 수 있을 것으로 기대된다.

박막태양전지 버퍼층 적용을 위해 RF 스퍼터링 및 급속열처리 공정으로 제작한 황화아연 박막의 구조적 광학적 특성 (Structural and Optical Properties of ZnS Thin Films Fabricated by Using RF Sputtering and Rapid Thermal Annealing Process for Buffer Layer in Thin Film Solar Cells)

  • 박찬일;전영길
    • 한국전자통신학회논문지
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    • 제15권4호
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    • pp.665-670
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    • 2020
  • CIGS 박막 태양 전지의 버퍼층은 흡수층과 윈도우층 사이의 밴드정렬(band alignment)을 통해 에너지 변환 효율을 향상시킨다. ZnS는 무독성의 II-VI 반도체 화합물로서 직접천이형 광대역 밴드갭과 n형 전도성을 가지며, 높은 광투과성, 높은 굴절률 등의 우수한 전기적, 광학적 특성을 가지고 있고, 우수한 격자정합을 가지는 물질이다. 이 연구에서, RF 마그네트론 스퍼터링 방법에 의해 증착 후 급속 열처리에 의해 제작된 ZnS 버퍼층 박막의 구조적, 광학적 특성의 상관관계에 대해 고찰하였다. (111), (220), (311) 면의 섬아연광 입방정 구조를 확인할 수 있고, 상대적으로 저온에서 급속열처리를 수행한 시료에서는 (002) 면의 우르쯔광 육방정 구조가 함께 나타나는 다결정이 되었다. 고온에서 급속열처리 수행한 시료에서는 섬아연광 입방정 구조의 단결정으로 상전이 된다. 화학적 성분 분석을 통해서 Zn/S의 비율이 화학양론에 근접한 시료에서 섬아연광 입방정 구조의 단결정이 나타났음을 확인하였다 급속열처리 온도가 증가할수록 흡수단이 다소간 단파장 쪽으로 이동되고, 가시광 파장 범위에서 평균 광투과율이 증가하는 경향성을 보이며 500℃ 조건에서는 80.40%로 향상되었다.

이온 주입법을 이용한 ZnO 박막의 As 도핑 (Arsenic Doping of ZnO Thin Films by Ion Implantation)

  • 최진석;안성진
    • 한국재료학회지
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    • 제26권6호
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    • pp.347-352
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    • 2016
  • ZnO with wurtzite structure has a wide band gap of 3.37 eV. Because ZnO has a direct band gap and a large exciton binding energy, it has higher optical efficiency and thermal stability than the GaN material of blue light emitting devices. To fabricate ZnO devices with optical and thermal advantages, n-type and p-type doping are needed. Many research groups have devoted themselves to fabricating stable p-type ZnO. In this study, $As^+$ ion was implanted using an ion implanter to fabricate p-type ZnO. After the ion implant, rapid thermal annealing (RTA) was conducted to activate the arsenic dopants. First, the structural and optical properties of the ZnO thin films were investigated for as-grown, as-implanted, and annealed ZnO using FE-SEM, XRD, and PL, respectively. Then, the structural, optical, and electrical properties of the ZnO thin films, depending on the As ion dose variation and the RTA temperatures, were analyzed using the same methods. In our experiment, p-type ZnO thin films with a hole concentration of $1.263{\times}10^{18}cm^{-3}$ were obtained when the dose of $5{\times}10^{14}$ As $ions/cm^2$ was implanted and the RTA was conducted at $850^{\circ}C$ for 1 min.

$CuAlSe_2$ 단결정 박막의 성장과 광전류 특성 (Growth and Photocurrent Properties for $CuAlSe_2$ Single Crystal Thin film)

  • 홍광준;백승남
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 2004년도 추계학술대회 논문집 Vol.17
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    • pp.226-229
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    • 2004
  • A stoichiometric mixture of evaporating materials for $CuAlSe_2$ single crystal thin films was prepared from horizontal electric furnace. To obtain the single crystal thin films, $CuAlSe_2$ mixed crystal was deposited on thoroughly etched semi-insulating GaAs(100) substrate by the hot wall epitaxy (HWE) system. The source and substrate temperatures were $680^{\circ}C$ and $410^{\circ}C$, respectively. The crystalline structure of the single crystal thin films was investigated by the photoluminescence and double crystal X-ray diffraction (DCXD). The carrier density and mobility of $CuAlSe_2$ single crystal thin films measured with Hall effect by van der Pauw method are $9.24{\times}10^{16}\;cm^{-3}$ and $295\;cm^2/V{\cdot}s$ at 293 K, respectively. The temperature dependence of the energy band gap of the $CuAlSe_2$ obtained from the absorption spectra was well described by the Varshni's relation, $E_g(T)\;=\;2.8382\;eV\;-\;(8.68{\times}10^{-4}\;eV/K)T^2/(T+155K)$. The crystal field and the spin-orbit splitting energies for the valence band of the $CuAlSe_2$ have been estimated to be 0.2026 eV and 0.2165 eV at 10K, respectively, by means of the photocurrent spectra and the Hopfield quasicubic model. These results indicate that the splitting of the ${\Delta}so$ definitely exists in the ${\Gamma}_5$ states of the valence band of the $CuAlSe_2$. The three photocurrent peaks observed at 10K are ascribed to the $A_1-$, $B_1-$, and $C_1$-exciton peaks for n = 1.

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Hot Wall Epitaxy(HWE)법에 의한 $v_2$ 단결정 박막의 성장과 광전류 특성 (Photocurrent Properties and Growth of $CuAlSe_2$ Single Crystal Thin Film by Hot Wall Epitaxy)

  • 유상하;홍광준
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 2003년도 하계학술대회 논문집 Vol.4 No.1
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    • pp.282-285
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    • 2003
  • Single crystal $CuAlSe_2$ layers were grown on thoroughly etched semi-insulating GaAs(100) substrate at $410\;^{\circ}C$ with hot wall epitaxy (HWE) system by evaporating $CuAlSe_2$ source at $680\;^{\circ}C$. The crystalline structure of the single crystal thin films was investigated by the photoluminescence and double crystal X-ray diffraction (DCXD). The carrier density and mobility of single crystal $CuAlSe_2$ thin films measured with Hall effect by van der Pauw method are $9.24{\times}10^{16}\;cm^{-3}\;and\;295\;cm^2/V{\cdot}s$ at 293 K, respectively. The temperature dependence of the energy band gap of the $CuAlSe_2$ obtained from the absorption spectra was well described by the Varshni's relation, $E_g(T)\;=\;2.8382\;eV\;-\;(8.68\;{\times}\;10^{-4}eV/K)T^2/(T\;+\;155\;K)$. The crystal field and the spin-orbit splitting energies for the valence band of the $CuAlSe_2$ have been estimated to be 0.2026 eV and 0.2165 eV at 10 K, respectively, by means of the photocurrent spectra and the Hopfield quasicubic model. These results indicate that the splitting of the $\Delta$so definitely exists in the ${\Gamma}_5$ states of the valence band of the $CuAlSe_2$. The three photocurrent peaks observed at 10 K are ascribed to the $A_1-$, $B_1-$, and $C_1$-exciton peaks for n = 1.

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태양전지용CuInSe2와 CuGaSe2 흡수층의 전자구조해석을 위한 표면 청정기술 개발 (Development of Surface Cleaning Techniques for Analysis of Electronics Structure in CuInSe2, CuGaSe2 Solar Cell Absorber Layer)

  • 김경환;최형욱;공석현
    • 한국전기전자재료학회논문지
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    • 제18권2호
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    • pp.125-129
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    • 2005
  • Two kinds of physical treatments were examined for the analysis both of intrinsic surface and interior nature of CuInS $e_2$[CIS] and CuGaS $e_2$[CGS] films grown in separated systems. For the first method, a selenium protection layer which was immediately deposited after the growth of the CIS was investigated. The Se cap layer protects CISe surface from oxidation and contamination during the transport under ambient atmosphere. The Se cap was removed by thermal annealing at temperature above 15$0^{\circ}C$. After the decapping treatment at 2$25^{\circ}C$ for 60 min, ultraviolet photoemission and inverse photoemission measurements of the CIS film showed that its valence band maximum(VBM) and conduction band minimum (CBM) are located at 0.58 eV below and 0.52 eV above the Fermi level $E_{F}$, respectively. For the second treatment, an Ar ion beam etching was exploited. The etching with ion kinetic energy $E_{k}$ above 500 eV resulted in broadening of photoemission spectra of core signals and occasional development of metallic feature around $E_{F}$. These degradations were successfully suppressed by decreasing $E_{k}$ below 400 eV. CGS films etched with the beam of $E_{k}$ = 400 eV showed a band gap of 1.7 eV where $E_{F}$ was almost centered.st centered.

펄스 레이저 증착(PLD)법에 의한 ZnO 박막 성장과 특성 (Growth and photocurrent properties for ZnO Thin Film by Pulsed Laser Deposition)

  • 홍광준
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 2005년도 추계학술대회 논문집 Vol.18
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    • pp.74-75
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    • 2005
  • ZnO epilayer were synthesized by the pulesd laser deposition(PLD) process on $Al_2O_3$ substrate after irradiating the surface of the ZnO sintered pellet by the ArF(193 nm) excimer laser. The epilayers of ZnO were achieved on sapphire ($Al_2O_3$) substrate at a temperature of $400^{\circ}C$. The crystalline structure of epilayer was investigated by the photoluminescence. The carrier density and mobility of ZnO epilayer measured with Hall effect by van der Pauw method are $8.27{\times}10^{16}cm^{-3}$ and $299cm^2/V{\cdot}s$ at 293 K, respectively. The temperature dependence of the energy band gap of the ZnO obtained from the absorption spectra was well described by the Varshni's relation, $E_g$(T) = 3.3973 eV - ($2.69{\times}10^{-4}$ eV/K)$T_2$/(T + 463 K). The crystal field and the spin-orbit splitting energies for the valence band of the ZnO have been estimated to be 0.0041 eV and 0.0399 eV at 10 K, respectively, by means of the photocurrent spectra and the Hopfield quasicubic model. These results indicate that the splitting of the $\triangle$so definitely exists in the $\ulcorner_6$ states of the valence band of the ZnO. The three photocurrent peaks observed at 10K are ascribed to the $A_1-$, $B_1-$, and $C_1$-exciton peaks for n = 1.

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Effects of strain on the optical and magnetic properties of Ce-doped ZnO

  • Xu, Zhenchao;Hou, Qingyu;Guo, Feng;Jia, Xiaofang;Li, Cong;Li, Wenling
    • Current Applied Physics
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    • 제18권12호
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    • pp.1465-1472
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    • 2018
  • The magnetic and optical properties of Ce-doped ZnO systems have been widely demonstrated, but the effects of different strains of Ce-doped ZnO systems remain unclear. To solve these problems, this study identified the effects of biaxial strain on the electronic structure, absorption spectrum, and magnetic properties of Ce-doped ZnO systems by using a generalized gradient approximation + U (GGA + U) method with plane wave pseudopotential. Under unstrained conditions, the formation energy decreased, the system became stable, and the doping process became easy with the increase in the distances between two Ce atoms. The band gap of the systems with different strains became narrower than that of undoped ZnO without strain, and the absorption spectra showed a red shift. The band gap narrowed, and the red shift became weak with the increase of compressive strain. By contrast, the band gap widened, and the red shift became significant with the increase of tensile strain. The red shift was significant when the tensile strain was 3%. The systems with -1%, 0%, and 1% strains were ferromagnetic. For the first time, the magnetic moment of the system with -1% strain was found to be the largest, and the system showed the greatest beneficial value for diluted magnetic semiconductors. The systems with -3%, -2%, 2%, and 3% strains were non-magnetic, and they had no value for diluted magnetic semiconductors. The ferromagnetism of the system with -1% strain was mainly caused by the hybrid coupling of Ce-4f, Ce-5d, and O-2p orbits. This finding was consistent with Zener's Ruderman-Kittel-Kasuya-Yosida theory. The results can serve as a reference for the design and preparation of new diluted magnetic semiconductors and optical functional materials.