Search

Start a new search
Current filters:
Add filters:
  • Results/Page
  • Sort items by
  • In order
  • Authors/record

Results 1-10 of 92 (Search time: 0.005 seconds).

NO Title, Author(s) (Publication Title, Volume Issue, Page, Issue Date)
1
Process and characterization of (Pb, La)TiO3 thin films deposited by MOCVD for gigabit DRAM application

Lee, SS; Kang, YM; Lee, J; Lee, DH; Kim, Ho Gi, JOURNAL DE PHYSIQUE IV, v.8, no.p9, pp.269, 1998-12

2
Effect of electric field on the phase transition in ZrTiO4 ceramic

Park, Y; Lee, HM; Kim, Ho Gi, JOURNAL OF APPLIED PHYSICS, v.82, pp.1491 - 1493, 1997-08

3
Deposition Behavior of Pb(ZrxTi1-x)O3 Thin Films by Metaorganic Chemical Vapor Deposition

J.H. Choi; Kim, Ho Gi, JOURNAL OF APPLIED PHYSICS, v.74, no.10, pp.6413 - 6417, 1993-11

4
Characterization and Electrical Properties of Chemical Vapor Deposited Ferroelectric Lead Titanate Films on Titanium

S.G. Yoon; Kim, Ho Gi, IEEE TRANSACTIONS ON ULTRASONICS FERROELECTRICS AND FREQUENCY CONTROL, v.37, no.5, pp.333 - 338, 1990

5
Electric field-temperature phase diagram of Zr0.98Sn0.02TiO4

y. park; k. cho; Kim, Ho Gi, JOURNAL OF APPLIED PHYSICS, v.83, no.9, pp.4628 - 4630, 1998

6
X-ray studies in ZrTiO4 ceramics under a low electric field

Kim, Ho Gi, J.APPLIED PHYSICS, pp.1491 - 1493, 1997-01

7
Platinum bottom electrodes formed by electron-beam evaporation for high-dielectric thin films

Lee, Hee Chul; Kim, Ho Gi, JAPANESE JOURNAL OF APPLIED PHYSICS, v.34, no.9B, pp.5220 - 5223, 1995-01

8
Electrical Breakdown of the PTCR Barium Titanate Ceramics

Kim, Ho Gi, 1995-01

9
Electrical properties of lead zirconate titanate thin films deposited on lanthanum nickel cobaltate

Choi, WY; Kim, Il-Doo; Ahn, JH; Kim, Ho Gi; Lee, WJ; Yoon, SG; Bai, K, JOURNAL OF THE KOREAN PHYSICAL SOCIETY, v.35, pp.504 - 2, 1999-07

10
Piezoelectric and Dielectric properties of Fe2O3-doped 0.57Pb(SCl/2Nb1/2)O3-0.43PbTiO3 ceramic materials

Kim, Ho Gi, JAPANESE JOURNAL OF APPLIED PHYSICS, v.38, no.3A, pp.1433 - 1437, 1999-01

rss_1.0 rss_2.0 atom_1.0