• Title/Summary/Keyword: Electrodepositon

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Mechanical and Tribological Properties of Pulse and Direct Current Electrodeposited Ni-TiO2 Nano Composite Coatings

  • Gyawali, Gobinda;Woo, Dong-Jin;Lee, Soo-Wohn
    • Journal of Surface Science and Engineering
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    • v.43 no.6
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    • pp.283-288
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    • 2010
  • Ni-$TiO_2$ nano composite coatings were fabricated using pulse current electrodeposition technique at 100 Hz pulse frequency with a constant 50% pulse duty cycles and reference was taken with respect to the direct current (dc) electrodeposition. The properties of the composite coatings were investigated by using SEM, XRD, Wear test and Vicker's microhardness test. Pulse electrodeposited composite has exhibited enhancement of (111), (220), and (311) diffraction lines with an attenuation of (200) line. The results demonstrated that the microhardness of composite coatings under pulse condition was significantly improved than that of pure nickel coating as well as dc electrodeposited Ni-$TiO_2$ composite coatings. Wear tracks have shown the less plastic deformation in pulse plated composite. Coefficient of friction was also found to be lower in pulse plated composite coatings as compared to dc plated composite coatings.

Influence of Incorporated impurities in the Tensile strength of deposition layer during Electrodepositon copper plating (전기동도금시 도금층내 혼입불순물이 인장강도에 미치는 영향)

  • Gu, Seok-Bon;Lee, Hong-Gi;Heo, Jin-Yeong;Jeon, Jun-Mi;Lee, Chang-Myeon
    • Proceedings of the Korean Institute of Surface Engineering Conference
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    • 2015.11a
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    • pp.264-264
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    • 2015
  • 전기동도금의 경우 도금후 박막의 구조와 특성이 변화하는 단점이 있다. 공정조건 중 인가전류 밀도에 따른 우선결정성장방위, 미세조직, 혼입불순물 및 인장강도 변화를 조사하였다. 혼입불순물이 적은 저전류 밀도($2A/dm^2$)에서는 동도금후 시간이 지남에 따라 초기 인장강도를 유지하였으나, 고전류 밀도(5, $8A/dm^2$)로 갈수록 혼입불순물이 많아지며 동도금후 인장강도 또한 초기값에 비해 약 60%이상 감소하였다.

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Synthesis of Aligned Te Nanoribbons by Lithographically Patterned Nanowire Electrodeposition Technique (리쏘그라피 패턴 전해증착법에 의해 얼라인된 Te 나노리본 합성)

  • Jeong, Hyeon-Seong;Myung, Nosang V.
    • Proceedings of the Korean Institute of Surface Engineering Conference
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    • 2014.11a
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    • pp.104-105
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    • 2014
  • 마이크로 패턴된 Au 전극사이에 얼라인된 Tellurium (Te) 나노리본들이 의도한 모양과 배열방식을 가지고 리쏘그래피 패턴 전해증착 (Lithographically patterned nanowier electrodepositon, LPNE) 방법에 의해 4인치 Si wafer 배치로 합성되었다. 합성된 Te 나노리본은 수 센티미터의 길이를 가지고, 그 두께와 폭 역시 작업 전극으로 사용되는 Si wafer위에 증착된 Ni의 두께와 전해증착 시간에 의해 쉽게 제어될 수 있다. $3{\mu}m$의 간격을 갖는 Au 전극 사이에 얼라인된 두께 ~100nm의 Te 나노리본들은 전해증착에 의해 그 폭이 제어되었고, 각각의 다른 폭을 갖는 증착된 하나의 Te 나노리본들의 IV 및 FET 측정을 통하여 나노리본 폭의 변화에 따른 전기적 특성 (비저항, FET 이동도 및 FET 캐리어 농도)이 평가되었다.

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A study for the fabrication of Ag nano-wire arrays (Ag nano-wire arrays의 제작에 관한 연구)

  • Jung, Kyung-Han;Shin, Hoon-Kyu;Kwon, Young-Soo
    • Proceedings of the KIEE Conference
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    • 2002.11a
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    • pp.161-163
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    • 2002
  • Siver nanowires have been obtained by electrodepositon in the porous anodic alumina that plays a role as a template in the constant current mode using DC power supply. The diameter and the length of the silver nanowires are about 55 nm and 13 ${\mu}m$ corresponding to them of the template respectively. The aspect ratio of the silver nanowires is more or less 200. The rate of the filling of the alumina pores is approximately 10%.

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Pulse Electrodeposition and Characterization of Ni-Si3N4 Composite Coatings

  • Gyawali, Gobinda;Woo, Dong-Jin;Lee, Soo-Wohn
    • Journal of Surface Science and Engineering
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    • v.43 no.5
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    • pp.224-229
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    • 2010
  • $Ni-Si_3N_4$ nano-composite coatings were prepared by pulse current (PC) electrodeposition and direct current (DC) electrodeposition techniques. The micro-structure of the coatings was characterized by scanning electron microscopy (SEM), vickers microhardness, X-Ray Diffraction (XRD) and wear-friction tests. The results showed that the micro-structure and wear performance of the coatings were affected by the electrodeposition techniques. Pulse current electrodeposited $Ni-Si_3N_4$ composite coatings exhibited higher microhardness, smooth surface, and better wear resistance properties as compared to coatings prepared under DC condition. The $Ni-Si_3N_4$ composite coatings prepared at 50 Hz pulse frequency with 10% duty cycles has shown higher codeposition of nano-particles. Consequently, increased microhardness and less plastic deformations occurred in coatings during sliding wear test. The XRD patterns revealed that the increased pulse frequencies changed the preferred (100) nickel crystallite orientations into mixed (111) and (100) orientations.

Pulse electrodeposition and characterization of Ni-$TiO_2$ nano composite coatings

  • Cho, Sung-Hun;Gyawali, Gobinda;Woo, Dong-Jin;Lee, Soo-Wohn
    • Proceedings of the Korean Institute of Surface Engineering Conference
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    • 2011.05a
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    • pp.153-153
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    • 2011
  • Ni $TiO_2$ nano composite coatings were fabricated by using pulse current electrodeposition technique at 100 Hz pulse frequency with a constant 50% pulse duty cycles and reference was taken with respect to the direct current electrodeposition. The properties of the composite coatings were investigated by using SEM, XRD, Wear test and Vicker's microhardness test. XRD patterns of pulse deposited composite coatings were found to be changed from preferred (100) orientation to the random mixed orientations. The results demonstrated that the Vickers microhardness of composite coatings under pulse condition was significantly improved than that of pure nickel coating as well as direct current electrodeposited Ni-$TiO_2$ composite coatings. Wear tracks have shown the less plastic deformation at pulse condition with reduced coefficient of friction. Nickel matrix grain size was also found to be lower in pulse plated composite coatings as compared to direct current electrodeposited composite coatings.

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Ultrasonic electrochemical deposition and characterization of Ni-SiC nanocomposite coatings

  • Gyawalia, Gobinda;Woo, Dong-Jin;Lee, Soo-Wohn
    • Proceedings of the Korean Institute of Surface Engineering Conference
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    • 2011.05a
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    • pp.58-58
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    • 2011
  • Nickel-ceramics nanocomposite coatings can be applied as the wear resistance coating, corrosion protection of underlying materials, and decorative coatings. Hence, Nickel based nanocomposite coatings, especially Ni-SiC, have been extensively studied in recent years. However, more often agglomeration problem of the nanoparticles in the nickel matrix can cause deterioration of the mechanical properties rather than improvement. The homogeneous distribution of the nanoparticles in the matrix coating is still being challenging. In this experiment, electrochemical deposition of Ni-SiC composite coating was done in presence of ultrasound. The effects of different ultrasonic powers and frequencies on the nanoparticle dispersion were studied. The electrodeposition was carried out in nickel sulfamate bath by applying pulse current technique. Compared to the conventional mechanical stirring technique to prevent nanoparticles agglomeration and sedimentation during composite electrodeposition, the aid of ultrasonic dispersion along with mechanical stirring has been found to be more effective not only for the nanoparticles dispersion, but also for the mechanical properties of the electrodeposited coatings. Nanoparticles were found to be distributed homogeneously with reduced agglomeration. The microstructure of the composite coating has also been changed, allowing some random orientations of the nickel crystallite grain growths, smooth surface, and finer grains. As a consequence, better mechanical properties of the composites were observed.

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Effects of Growth Temperature and Time on Properties of ZnO Nanostructures Grown by Electrodeposition Method (Electrodeposition에 의해 성장온도와 시간을 달리하여 성장한 ZnO 나노구조의 특성)

  • Park, Youngbin;Nam, Giwoong;Park, Seonhee;Moon, Jiyun;Kim, Dongwan;Kang, Hae Ri;Kim, Haeun;Lee, Wookbin;Leem, Jae-Young
    • Journal of Surface Science and Engineering
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    • v.47 no.4
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    • pp.204-209
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    • 2014
  • The electrodeposition of ZnO nanorods was performed on ITO glass. The optimization of two process parameters (solution temperature and growth time) has been studied in order to control the orientation, morphology, density, and growth rate of ZnO nanorods. The structural and optical properties of ZnO nanorods were systematically investigated by using field-emission scanning electron microscopy, X-ray diffractometer, and photoluminescence. Commonly, the results of the structural property show that hexagonal ZnO nanorods with wurtzite crystal structures have a c-axis orientation, and higher intensity for the ZnO (002) diffraction peaks. Furthermore, the nanorods length increased with increasing both the solution temperature and the growth time. The results of the optical property show a strong UV (3.28 eV) peaks and a weak visible (1.9~2.4 eV) bands, the intensity of UV peaks was increased with increasing both the solution temperature and the growth time. Especially, the UV peak for growth of nanorods at $75^{\circ}C$ blue-shift than different temperatures.

Effects of Precursor Concentration and Current on Properties of ZnO Nanorod Grown by Electrodeposition Method (전착법으로 성장된 산화아연 나노막대의 특성에 전구체 농도 및 전착 전류가 미치는 효과)

  • Park, Youngbin;Nam, Giwoong;Park, Seonhee;Moon, Jiyun;Kim, Dongwan;Kang, Hae Ri;Kim, Haeun;Lee, Wookbin;Leem, Jae-Young
    • Journal of Surface Science and Engineering
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    • v.47 no.4
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    • pp.198-203
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    • 2014
  • ZnO nanorods have been deposited on ITO glass by electrodeposition method. The optimization of two process parameters (precursor concentration and current) has been studied in order to control the orientation, morphology, and optical property of the ZnO nanorods. The structural and optical properties of ZnO nanorods were systematically investigated by using field-emission scanning electron microscopy, X-ray diffractometer, and photoluminescence. Commonly, the results show that ZnO nanorods with a hexagonal form and wurtzite crystal structure have a c-axis orientation and higher intensity for the ZnO (002) diffraction peaks. Both high precursor concentration and high electrodeposition current cause the increase in nanorods diameter and coverage ratio. ZnO nanorods show a strong UV (3.28 eV) and a weak visible (1.9 ~ 2.4 eV) bands.