• Title/Summary/Keyword: Electrophoretic deposition (EPD)

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Dielectric Properties of Ca0.8Sr1.2Nb3O10 Nanosheet Thin Film Deposited by the Electrophoretic Deposition Method

  • Yim, Haena;Yoo, So-Yeon;Choi, Ji-Won
    • Journal of Sensor Science and Technology
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    • v.27 no.1
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    • pp.1-5
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    • 2018
  • Two-dimensional (2D) niobate-based nanosheets have attracted attention as high-k dielectric materials. We synthesized strontiumsubstituted calcium niobate ($Ca_{0.8}Sr_{1.2}Nb_3O_{10}$) nanosheets by a two-step cation exchange process from $KCa_{0.8}Sr_{1.2}Nb_3O_{10}$ ceramic. The $K^+$ ions were exchanged with $H^+$ ions, and then H+ ions were exchanged with tetrabutylammonium ($TBA^+$) cations. The $Ca_{0.8}Sr_{1.2}Nb_3O_{10}$ nanosheets were then exfoliated, decreasing the electrostatic interaction between each niobate layer. Furthermore, $Ca_2Nb_3O_{10}$ nanosheets were synthesized in same process for comparison. Each exfoliated nanosheet shows a single-crystal phase and has a lateral size of over 100 nm. The nanosheets were deposited on a $Pt/Ti/SiO_2/Si$ substrate by the electrophoretic deposition (EPD) method at 40 V, followed by ultraviolet irradiation of the films in order to remove the remaining $TBA^+$ ions. The $Ca_{0.8}Sr_{1.2}Nb_3O_{10}$ thin film exhibited twice the dielectric permittivity (~60) and lower dielectric loss than $Ca_2Nb_3O_{10}$ thin films.

Preparation of $Ce_{0.8}Sm_{0.2}O_{x}$ Electrolyte Thin Film for Solid Oxide Fuel Cells by Electrophoretic Deposition (전기영동법을 이용한 고체산화물 연료전지용 $Ce_{0.8}Sm_{0.2}O_{x}$ 전해질 박막 제조)

  • Kim, Dong-Gyu;Song, Min-Wu;Lee, Kyeong-Seop;Kim, Yoen-Su;Kim, Young-Soon;Shin, Hyung-Shik
    • Korean Chemical Engineering Research
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    • v.49 no.6
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    • pp.781-785
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    • 2011
  • In this work, a nano-sized samaria-doped ceria(SDC) was prepared by a urea-based hydrothermal method and characterized by XRD, FESEM and TEM. It was observed that the increase in synthesis time and temperature gave rise to crystallity and particles size. Moreover, the synthesised powders had a excellent ion-conductivity(0.1 S/cm at 600~$800^{\circ}C$) which is suitable for electrolyte of intermediate temperature-solid oxide fuel cell(IT-SOFC). Subsequently for use as electrolyte for anode-supported IT-SOFC, we tried to deposit the SDC powder on a porous NiO-SDC substrate by electrophoretic deposition(EPD) method. From the FESEM observation, a compact

Property Improvement of YBCO Thick films by EPD with Addition of PEG (PEG 첨가에 의한 YBCO 전착후막의 특성 향상)

  • 소대화;전용우
    • Journal of the Korean Institute of Electrical and Electronic Material Engineers
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    • v.16 no.12
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    • pp.1125-1130
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    • 2003
  • The electrophoretic deposition method using the suspension solution with additives under the electric potential was applied for the fabrication of YBCO superconductor wire. This method was able to simplify the fabrication facilities, and produce an uniform and dense thick film. To improve the critical current density of deposited films, the additive PEGs(Poly Ethylene Glycole) with the molecular weight of 600, 1000 and 3400 were used as chemical binders for the suspension solution. The organic additive (PEG) showed better effects to the properties of YBCO superconductor wire. The PEG improved the adhesion between superconductor particles and suppressed the crack on the surface, which enhanced the surface uniformity and density of YBCO deposited film. It was found that acetone suspension solution showed better deposition properties than the others. The samples fabricated in the solution with the additive, 8 vol.% of 1% PEG(1000), showed the highest critical current density measured as 2300∼2400 A/$\textrm{cm}^2$ at 77 K, 0 T.

Superconducting Thick Film by Lateral Field Assisted EPD (측면보조전계 인가 전기영동전착 초전도후막)

  • 전용우;소대화;조용준
    • Journal of the Korea Institute of Information and Communication Engineering
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    • v.8 no.3
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    • pp.679-685
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    • 2004
  • Although the electrophoretic deposition method has the advantage of simple processing procedure, less fabrication facilities, and easier control for deposition thickness and wire length, providing economical and technical merits, it also has the disadvantages of cracking and porosity phenomena, requiring an improved processing method for higher particle density and constant particle orientation. we have developed an optimization method to increase the particle density and to unify its orientation, and have performed a study to overcome the cracking and porosity problems in the fabricated superconductor. In order to improve the surface uniformity and the conduction properties of the fabricated YBCO thick films, a system that applies alternate voltage vertically has been developed for the first time and applied to the electrophoretic deposition process. The applied alternate electric field caused a force to be exerted on each YBCO particle and resulted in a rotation of the particle in the direction of applied electric field, accomplishing a uniform particle orientation. We name this process as the shaky-aligned electrophoretic deposition method. For commercial utilization and efficiency, in this dissertation, alternating voltage of 60 Hz and 25 ∼ 120 V/cm was proposed to apply it as a subsidiary source for shaky-flow deposition so that the fabricated thin film showed uniform surface morphology with less voids and cracks and Tc,zero of 90 K and the critical current density of 3419 A/$cm^2$.

Electrical and Mechanical Properties of Cu/Carbon Nano-Particle Hybrids Composites by Cathodic Electrophoresis (음극 전기영동법에 의해 제조된 구리/탄소 나노입자 하이브리드 복합재료의 전기적/기계적 특성 평가)

  • Lee, Wonoh;Lee, Sang-Bok;Choi, Oyoung;Yi, Jin-Woo;Byun, Joon-Hyung
    • Korean Journal of Metals and Materials
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    • v.48 no.12
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    • pp.1130-1135
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    • 2010
  • Cu/carbon nano-particle hybrids were fabricated through the cathodic electrophoretic deposition (EPD) process. CNT and CNF nano-particles were modified to give positive charges by polyethyleneimine (PEI) treatment before depositing them on the substrate. Since a Cu plate was used as an anode in the EPD process, Cu particles were also deposited along with the carbon nano-particles. Experimental observation showed the nano-hybrids constructed a novel formicary-like nano-structure which is strong and highly conductive. Utilizing the hybrids, carbon fiber composites were manufactured, and their electrical conductivity and interlaminar shear strength were measured. In addition, the deposition morphology and failure surface were examined by SEM observations. Results demonstrated that the electrical conductivities in the through-the-thickness direction and the interlaminar shear strength significantly increased by 350~2100% and 14%, respectively.

Critical Current Density Improvement of Superconducting YBCO Thick Film by using EPD Additives (전착 첨가물에 의한 전기영동 초전도 YBCO 후막선재의 임계전류밀도 개선)

  • Soh, Dea-Wha;Lim, Byong-Jae;Jeon, Yong-Woo;Park, Jung-Cheul;Choi, Sung-Jai
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 2003.07a
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    • pp.123-126
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    • 2003
  • The electrophoretic deposition method using the suspension solution with additives under the electric potential was applied for the fabrication of YBCO superconductor wire. This method was able to simplify the fabrication facilities, and produce an uniform and dense thick film. To improve the critical current density of deposited films, the additive PEGs(Poly Ethylene Glycole) with the molecular weight of 600, 1000 and 3400, were used as chemical binders for the suspension solution. The organic additive PEG showed better effects to the properties of YBCO superconductor wire. The PEG improved the adhesion between superconductor particles and suppressed the crack on the surface, which enhanced the surface uniformity and density of YBCO deposited film. It was found that acetone suspension solution showed better deposition properties than the others. The samples fabricated in the solution with the additive, 8 vol.% of 1% PEG(1000), showed the highest critical current density measured as $2300{\sim}2400\;Acm^2$ at 77 K, 0 T.

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Cycling Behavior of Binder-Free Graphite-Lithium Intercalation Anode In AICI3-EMIC-LiCI-SOCI2 Room-Temperature Molten Salt

  • Koura, Nobuyuki;Minami, Takuto;Etoh, Keiko;Idemoto, Yasushi;Matsumoto, Futoshi
    • Journal of the Korean Electrochemical Society
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    • v.5 no.4
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    • pp.178-182
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    • 2002
  • The electrochemical behavior of binder-free carbon anode, comprising of only artificial and natural graphite (AG and NG) particles, for intercalation and deintercalation of lithium ion $(Li^+)$ in aluminum chloride (AICI_3)-I-ethyl­3-methylimidazolium chloride (EMIC)-lithium chloride (LiCl)-thionyl chloride $(SOCI_2)$ room-temperature molten salt (RTMS) was studied. Binder-free carbon electrodes were fabricated using electrophoretic deposition (EPD) method. The binder-free carbon anodes provided a relatively flat charge and discharge potentials $(0\;to\;0.2V\;vs.\;Li/Li^+)$ and current capabilities $(250-340mAh{\cdot}g^{-1})$ for the intercalation and deintercalation of $Li^+$. Stability of the binder-free carbon anodes for intercalation and deintercalation of 50 cycles was confirmed.

고 진공 (UHV) 조건을 이용하여 구리 나노 분말에 도포한 1-octanethiol 기상 자기조립박막(SAMs)의 두께 조절에 관한 연구

  • Gwon, Jin-Hyeong;Kim, Dong-Gwon;No, Ji-Yeong;Park, Sin-Yeong;Lee, Tae-Hun;Yang, Jun-Mo;Lee, Seon-Yeong
    • Proceedings of the Materials Research Society of Korea Conference
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    • 2010.05a
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    • pp.23.1-23.1
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    • 2010
  • Alkanethiol (CH3(CH2)nSH) 자기 조립 박막은 금, 은, 팔라듐 그리고 구리와 같은 금속 물질과 결합하여 산화 방지 보호막, 생화학적 멤브레인 그리고 케미컬 센서로 널리 이용되었다. 전도성을 가진 많은 금속 분말 중에서, 구리는 뛰어난 열, 전기 전도성과 풍부한 양으로 다른 귀금속에 비교하여 경제성까지 갖춘 물질이다. 그러나 이러한 구리 나노 분말은 대기에 노출된 구리 분말이 쉽게 산화된다는 결정적인 단점 때문에 그동안 널리 이용되지 못하였다. 이러한 구리의 단점을 극복하고 뛰어난 전도성의 특징을 이용하고자, Langmuir-Blodgett (LB), layer by layer (LbL), electrophoretic deposition (EPD), self-assembled monolayer (SAM)과 같은 구리 나노 분말 위에 유기 박막을 형성하고자 하는 많은 방법이 시도되어왔다. 이러한 방법들 대부분은 습식 방법으로 진행되었으며, 약 2-nm 두께의 SAM 구조를 형성할 수 있음이 많은 연구를 통하여 확인되었다. 그러나 습식 기반의 SAM 구조는 단지 수일 동안만 유효하며, 이는 코팅을 수행하면서 점차 떨어지는 source solvent의 순도와 적합하지 않은 코팅 조건, 그리고 이러한 원인으로 형성된 부실한 막질 구조 때문으로 추측된다. 게다가 이러한 습식 기반 공정은 코팅 막의 두께 조절과 코팅 시 solvent의 순도를 일정하게 유지하는 것이 매우 복잡하고 어려운 작업으로 알려져 왔다. 본 실험에서는 고 진공 챔버 (< $4.0{\times}10-6$ torr) 시스템을 이용하여 습식 기반 공정의 문제점을 극복하고 구리 나노 분말의 산화를 막기 위한 실험을 진행하였다. 1-octanethiol (CH3(CH2)7SH)은 중간 길이의 hydrocarbon (n=7) 구조를 가진 특징 때문에 코팅 물질로 사용되었다. 게다가, alkanethiol 족 특유의 물질인 황(sulfur)은 구리와 결합하여 산화방지 보호막의 역할을 수행할 수 있다. 저 진공 조건에서는 10-nm의 multilayer가 일괄적으로 코팅됨을 확인할 수 있었다. 본 실험에서는 약 10-nm 두께의 자기 조립 박막(self assembled monolayers: SAMs)이 고 진공 조건에서 구리 나노 분말 표면 위에 코팅 조건의 변경을 통해서 5-nm에서 10-nm 두께의 1-octanethiol SAMs 구조를 얻어낼 수 있었다. 이는 고 진공 조건에서 1-octanethiol SAMs의 코팅 두께를 조절함으로 다양한 크기의 분말에 코팅 물질로 쓰일 수 있음을 알 수 있다.

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