• Title/Summary/Keyword: ZnO:P

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Nano-structural Characteristics of N-doped ZnO Thin Films (N-doped ZnO 박막의 미세 구조 특성)

  • Lee, Eun-Ju;Zhang, Ruirui;Park, Jae-Don;Yoon, Gi-Wan
    • Journal of the Korea Institute of Information and Communication Engineering
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    • v.13 no.11
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    • pp.2385-2390
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    • 2009
  • N-doped ZnO thin films with c-axis preferred orientation were prepared on p-Si(100) wafers, using an RF magnetron sputter deposition. For ZnO deposition, $N_2O$ gas was employed as a dopant source and various deposition conditions such as $N_2O$ gas fraction and RF power were applied. The depth pofiles of the nitrogen [N] atoms incorporated into the ZnO thin films were investigated by Auger Electron Spectroscopy(AES) and the nano-scale structural characteristics of the N-doped ZnO thin films were also investigated by a scanning electron microscope (SEM) technique.

Dissolution Properties of $K_2O$-CaO-$P_2O_5$ Glasses With Fe, Cu, Zn ($K_2O$-CaO-$P_2O_5$계 유리의 Fe, Cu, Zn 첨가에 따른 용출 특성)

  • Kim, Ki-Min;Kang, Won-Ho
    • Proceedings of the KAIS Fall Conference
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    • 2008.11a
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    • pp.459-462
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    • 2008
  • 본 논문에서는 $10K_2O$-30CaO-$60P_2O_5$ mol%를 기본조성으로 하여 Fe, Cu, Zn의 미량성분을 첨가하여 유리를 제조하고 용출 특성을 평가 하였다. 제조된 유리는 미량성분의 첨가량에 따라 유리의 투명도가 변하는 것이 관찰되었다. 용출특성은 측정 4시간 뒤 pH값 증가되는 것으로 16시간 후 pH가 증가하는 것으로 관찰되었다. 여기서 pH의 증가는 염기성산화물이 용출되는 것으로, 감소는 $P_2O_5$구조인 망목형성구조가 붕괴되어지면서 산성이온이 용출되어지는 것으로 판단되어진다. ICP관찰시에는 함량이 증가하면서 K, Ca, P이온의 용출량이 감소되었고, Zn, Cu, Fe이온의 용출량이 증가하는 경향이 관찰되었다.

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Optical characteristics of p-type ZnO epilayers doped with Sb by metalorganic chemical vapor deposition

  • Kwon, B.J.;Cho, Y.H.;Choi, Y.S.;Park, S.J.
    • Proceedings of the Korean Vacuum Society Conference
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    • 2010.02a
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    • pp.122-122
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    • 2010
  • ZnO is a widely investigated material for the blue and ultraviolet solid-state emitters and detectors. It has been promoted due to a wide-band gap semiconductor which has large exciton binding energy of 60 meV, chemical stability and low radiation damage. However, there are many problems to be solved for the growth of p-type ZnO for practical device applications. Many researchers have made an efforts to achieve p-type conductivity using group-V element of N, P, As, and Sb. In this letter, we have studied the optical characteristics of the antimony-doped ZnO (ZnO:Sb) thin films by means of photoluminescence (PL), PL excitation, temperature-dependent PL, and time-resolved PL techniques. We observed donor-to-acceptor-pair transition at about 3.24 eV with its phonon replicas with a periodic spacing of about 72 meV in the PL spectra of antimony-doped ZnO (ZnO:Sb) thin films at 12 K. We also investigate thermal activation energy and carrier recombination lifetime for the samples. Our result reflects that the antimony doping can generate shallow acceptor states, leading to a good p-type conductivity in ZnO.

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Realization of p-type ZnO Thin Films Using Codoping N and Al by RF Magnetron Sputtering

  • Jin, Hu-Jie;So, Byung-Moon;Park, Bok-Kee;Park, Choon-Bae
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 2006.11a
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    • pp.107-108
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    • 2006
  • ZnO is a promising material for UV or blue LEDs p-Type ZnO thin films which are imperative for the p-n junction of LEDs are difficult to achieve because of strong compensation of intrinsic defects such as zinc interstitial and oxygen vacancy. The method of codoping group three elements and group five elements is effective for the realization of p-type ZnO films. In this study, We codoped N and Al m ZnO thin films by RF magnetron sputtering and annealed the films in sputtering chamber. Some films showed p-type conductivity m Seeback effect measurement.

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PL Property of Al-N Codoped p-type ZnO Thin Films Fabricated by DC Magnetron Sputtering

  • Liu, Yan-Yan;Jin, Hu-Jie;Park, Choon-Bae;Hoang, Geun-C.
    • Transactions on Electrical and Electronic Materials
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    • v.10 no.3
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    • pp.89-92
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    • 2009
  • High-quality Al-N doped p-type ZnO thin films were deposited on Si and buffer layer/Si by DC magnetron sputtering in a mixture of $N_2$ and $O_2$ gas. The target was ceramic ZnO mixed with $Al_2O_3$ (2 wt%). The p-type ZnO thin films showed a carrier concentration in the range of $1.5{\times}10^{15}{\sim}2.93{\times}10^{17}\;cm^{-3}$, resistivity in the range of 131.2${\sim}$2.864 ${\Omega}cm$, mobility in the range of 3.99${\sim}$31.6 $cm^2V^{-1}s^{-l}$, respectively. It was easier to dope p-type ZnO films on Si substrates than on buffer layer/Si. The film grown on Si showed the highest quality of photoluminescence (PL) characteristics. The Al donor energy level depth $(E_d)$ of Al-N codoped ZnO films was reduced to about 50 meV, and the N acceptor energy level depth $(E_a)$ was reduced to 63 meV.

Enhanced pH Response of Solution-gated Graphene FET by Using Vertically Grown ZnO Nanorods on Graphene Channel

  • Kim, B.Y;Jang, M.;Shin, K.-S.;Sohn, I.Y;Kim, S.-W.;Lee, N.-E
    • Proceedings of the Korean Vacuum Society Conference
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    • 2014.02a
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    • pp.434.2-434.2
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    • 2014
  • We observe enhanced pH response of solution-gated field-effect transistors (SG-FET) having 1D-2D hybrid channel of vertical grown ZnO nanorods grown on CVD graphene (Gr). In recent years, SG-FET based on Gr has received a lot of attention for biochemical sensing applications, because Gr has outstanding properties such as high sensitivity, low detection limit, label-free electrical detection, and so on. However, low-defect CVD Gr has hardly pH responsive due to lack of hydroxyl group on Gr surface. On the other hand, ZnO, consists of stable wurtzite structure, has attracted much interest due to its unique properties and wide range of applications in optoelectronics, biosensors, medical sciences, etc. Especially, ZnO were easily grown as vertical nanorods by hydrothermal method and ZnO nanostructures have higher sensitivity to environments than planar structures due to plentiful hydroxyl group on their surface. We prepared for ZnO nanorods vertically grown on CVD Gr (ZnO nanorods/Gr hybrid channel) and to fabricate SG-FET subsequently. We have analyzed hybrid channel FETs showing transfer characteristics similar to that of pristine Gr FETs and charge neutrality point (CNP) shifts along proton concentration in solution, which can determine pH level of solution. Hybrid channel SG-FET sensors led to increase in pH sensitivity up to 500%, compared to pristine Gr SG-FET sensors. We confirmed plentiful hydroxyl groups on ZnO nanorod surface interact with protons in solution, which causes shifts of CNP. The morphology and electrical characteristics of hybrid channel SG-FET were characterized by FE-SEM and semiconductor parameter analyzer, respectively. Sensitivity and sensing mechanism of ZnO nanorods/Gr hybrid channel FET will be discussed in detail.

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동시 첨가된 Al : P 비 변화에 따른 ZnO 세라믹의 특성 변화 연구

  • Hong, Hyo-Gi;Kim, Se-Yun;Seong, Sang-Yun;Jo, Gwang-Min;Lee, Jeong-A;Lee, Jun-Hyeong;Heo, Yeong-U;Kim, Jeong-Ju
    • Proceedings of the Korean Vacuum Society Conference
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    • 2011.08a
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    • pp.251-251
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    • 2011
  • ZnO는 투명전극, 태양전지, 광전소자, 다이오드, 센서, 산화물 TFT 등에 널리 사용되는 재료로서, hexagonal wurtzite 결정구조, 약 3.37eV 정도의 넓은 밴드갭, 60mV의 여기 바인딩 에너지를 가지는 것으로 알려져있다. 순수한 ZnO 박막은 일반적으로 n-형 특성을 나타내고 있지만, ZnO-based 광전소자 분야에서는 p-형 전도의 부족이라는 큰 단점을 가지고 있으며 광전소자로서의 ZnO의 응용에서 n-형과 p-형 전도는 둘다 필수적이다. 또한 ZnO 박막의 억셉터 농도를 증가시키기 위해서 억셉터(N,P)와 도너(Ga,Al,In)를 동시치환시킨 몇몇 연구가 있어왔다.본 연구에서는 Al과 P를 동시치환시킨 Al0.02-XP0.01+xZn0.970 (x=0, 0.005, 0.01) 조성에서 산소 분압을 변화 시켰을때의 박막의 구조적, 전기적 특성에 대해 관찰하였다. 박막의 경우는 c-plane 사파이어 기판에서 PLD 로 증착시켰다.

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Characterization of Nano-Grained ZnO Piezoelectric Thin Films Deposited under Various Sputtering Conditions

  • Zhang, Ruirui;Lee, Eunju;Yoon, Giwan
    • Proceedings of the Korean Institute of Information and Commucation Sciences Conference
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    • 2009.10a
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    • pp.428-430
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    • 2009
  • C-axis-oriented ZnO thin films were successfully deposited on p-Si (100) in an RF magnetron sputtering system. Deposition conditions such as deposition power, working pressure, and oxygen gas ratio were varied. Crystalline structures of the deposited ZnO films were investigated by a scanning electron microscope (SEM) technique. Results show that the deposition parameters can have a strong impact on the preferred orientations and grain sizes of the deposited ZnO films.

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In-situ XPS Study of Core-levels of ZnO Thin Films at the Interface with Graphene/Cu

  • Choi, Jinsung;Jung, Ranju
    • Journal of the Korean Physical Society
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    • v.73 no.10
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    • pp.1546-1549
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    • 2018
  • We have investigated core-levels of ZnO thin films at the interface with the graphene on Cu foil using in-situ X-ray Photoelectron Spectroscopy (XPS). Spectral evolution of C 1s, Zn 2p, and O 1s are observed in real time during RF sputtering deposition. We found binding energy (BE) shifts of Zn 2p and 'Zn-O' state of O 1s depending on ZnO film thickness. Core-levels BE shifts of ZnO will be discussed on the basis of electron transfer at the interface and it may have an important role in the electronic transport property of the ZnO/graphene-based electronic device.

Photoelectrochemical Properties of a Cu2O Film/ZnO Nanorods Oxide p-n Heterojunction Photoelectrode for Solar-Driven Water Splitting (물분해용 Cu2O 박막/ZnO 나노막대 산화물 p-n 이종접합 광전극의 광전기화학적 특성)

  • Park, Junghwan;Kim, Hyojin;Kim, Dojin
    • Korean Journal of Materials Research
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    • v.28 no.4
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    • pp.214-220
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    • 2018
  • We report on the fabrication and photoelectrochemical(PEC) properties of a $Cu_2O$ thin film/ZnO nanorod array oxide p-n heterojunction structure with ZnO nanorods embedded in $Cu_2O$ thin film as an efficient photoelectrode for solar-driven water splitting. A vertically oriented n-type ZnO nanorod array was first prepared on an indium-tin-oxide-coated glass substrate via a seed-mediated hydrothermal synthesis method and then a p-type $Cu_2O$ thin film was directly electrodeposited onto the vertically oriented ZnO nanorods array to form an oxide semiconductor heterostructure. The crystalline phases and morphologies of the heterojunction materials were characterized using X-ray diffraction and scanning electron microscopy as well as Raman scattering. The PEC properties of the fabricated $Cu_2O/ZnO$ p-n heterojunction photoelectrode were evaluated by photocurrent conversion efficiency measurements under white light illumination. From the observed PEC current density versus voltage (J-V) behavior, the $Cu_2O/ZnO$ photoelectrode was found to exhibit a negligible dark current and high photocurrent density, e.g., $0.77mA/cm^2$ at 0.5 V vs $Hg/HgCl_2$ in a $1mM\;Na_2SO_4$ electrolyte, revealing an effective operation of the oxide heterostructure. In particular, a significant PEC performance was observed even at an applied bias of 0 V vs $Hg/HgCl_2$, which made the device self-powered. The observed PEC performance was attributed to some synergistic effect of the p-n bilayer heterostructure on the formation of a built-in potential, including the light absorption and separation processes of photoinduced charge carriers.