Ajou University repository

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Showing results 1 to 10 of 1717 (Search time: 0.156 seconds).

Control of the electrical resistivity of Ni-Cr wires using low pressure chemical vapor deposition of tin
  • 2018-01-31
  • Applied Surface Science, Vol.429, pp.134-137
  • Elsevier B.V.
Pulse co-deposition of tin-silver alloy from citric acid plating bath for microelectronic applications
  • 2019-11-06
  • Materials Research Express, Vol.6
  • Institute of Physics Publishing
Alternative Surface Reaction Route in the Atomic Layer Deposition of Titanium Nitride Thin Films for Electrode Applications
  • 2021-02-23
  • ACS Applied Electronic Materials, Vol.3, pp.999-1005
  • American Chemical Society
Controlled Surface Morphology and Electrical Properties of Sputtered Titanium Nitride Thin Film for Metal–Insulator–Metal Structuresoa mark
  • Dongquoc, Viet;
  • Seo, Dong Bum;
  • Anh, Cao Viet;
  • Lee, Jae Hyun;
  • Park, Jun Hong;
  • Kim, Eui Tae
  • 2022-10-01
  • Applied Sciences (Switzerland), Vol.12
  • MDPI
Photocatalytic degradation characteristics of heterojunction SnO2-CuxO nanopowders of methylene blue under UV light
  • Eom, Kiryung;
  • Yoo, Il Han;
  • Kalanur, Shankara Sharanappa;
  • Seo, Hyungtak
  • 2021-03-01
  • Korean Journal of Chemical Engineering, Vol.38, pp.617-623
  • Springer
Morphology, resistivity and corrosion behavior of tin coatings plated from citric acid bath
  • 2019-10-18
  • Materials Research Express, Vol.6
  • Institute of Physics Publishing
Transparent and Flexible Electromagnetic Interference Shielding Film Using ITO Nanobranches by Internal Scattering
  • Kim, Youngho;
  • Hyeong, Seok Ki;
  • Choi, Yeunji;
  • Lee, Seoung Ki;
  • Lee, Jae Hyun;
  • Yu, Hak Ki
  • 2021-12-29
  • ACS Applied Materials and Interfaces, Vol.13, pp.61413-61421
  • American Chemical Society
Strategy for Controlling the Electrical Conductivity of Indium Tin Oxide (ITO) Nanobranches
  • Lee, Dong Kyu;
  • Choi, Kyoung Soon;
  • Lee, Jaeyeong;
  • Kim, Youngho;
  • Oh, Sein;
  • Shin, Hojun;
  • Jeon, Cheolho;
  • Yu, Hak Ki
  • 2019-07-01
  • Advanced Electronic Materials, Vol.5
  • Blackwell Publishing Ltd
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