Crossref Citations
This article has been cited by the following publications. This list is generated based on data provided by
Crossref.
Iijima, T.
Onagawa, J.
and
Sanada, N.
1998.
Effect of film thickness on ferroelectric properties of SOL-GEL DERIVED Pb(Ti,Nb)O3type thin films.
Integrated Ferroelectrics,
Vol. 20,
Issue. 1-4,
p.
129.
Park, Eung-Chul
Lee, Jang-Sik
Park, Jung-Ho
Lee, Byung-Il
and
Joo, Seung-Ki
2000.
Effect of ion damage on the crystallization of PZT thin films.
Integrated Ferroelectrics,
Vol. 31,
Issue. 1-4,
p.
173.
Roy, S. S.
Gleeson, H.
Shaw, C. P.
Whatmore, R. W.
Huang, Z.
Zhang, Q.
and
Dunn, S.
2000.
Growth and characterisation of lead zirconate titanate (30/70) on indium tin oxide coated glass for oxide ferroelectric-liquid crystal display application.
Integrated Ferroelectrics,
Vol. 29,
Issue. 3-4,
p.
189.
Yang, R.-Y.
Lin, M.-H.
and
Lu, H.-Y.
2001.
Core–shell structures in pressureless-sintered undoped Pb(Fe2/3W1/3)O3 ceramics.
Acta Materialia,
Vol. 49,
Issue. 13,
p.
2597.
Lee, Jang-Sik
and
Joo, Seung-Ki
2002.
Analysis of grain-boundary effects on the electrical properties of Pb(Zr,Ti)O3 thin films.
Applied Physics Letters,
Vol. 81,
Issue. 14,
p.
2602.
Whatmore, R.W.
Zhang, Q.
Huang, Z.
and
Dorey, R.A.
2002.
Ferroelectric thin and thick films for microsystems.
Materials Science in Semiconductor Processing,
Vol. 5,
Issue. 2-3,
p.
65.
Lin, Ming‐Hong
and
Lu, Hong‐Yang
2002.
Origin of the Superlattice Reflections in Pb(Fe2/3W1/3)O3.
Journal of the American Ceramic Society,
Vol. 85,
Issue. 12,
p.
3065.
Lee, Jang-Sik
and
Joo, Seung-Ki
2002.
The problems originating from the grain boundaries in dielectric storage capacitors.
Solid-State Electronics,
Vol. 46,
Issue. 10,
p.
1651.
Huang, Ming‐Ren
Peng, Cheng‐Jien
and
Lu, Hong‐Yang
2003.
Lead Zirconate Titanate Thin Films by Aerosol Plasma Deposition: Microstructure Analysis.
Journal of the American Ceramic Society,
Vol. 86,
Issue. 12,
p.
2167.
Schwartz, Robert W.
Schneller, Theodor
and
Waser, Rainer
2004.
Chemical solution deposition of electronic oxide films.
Comptes Rendus. Chimie,
Vol. 7,
Issue. 5,
p.
433.
Huang, Ming-Ren
Peng, Cheng-Jien
and
Lu, Hong-Yang
2004.
Aerosol deposition of dense lead zirconate titanate thin films at room temperature.
Ceramics International,
Vol. 30,
Issue. 8,
p.
2163.
Van Genechten, D.
Vanhoyland, G.
D'Haen, J.
Johnson, J.
Wouters, D.J.
Van Bael, M.K.
Van den Rul, H.
Mullens, J.
and
Van Poucke, L.C.
2004.
Phase evolution of sol–gel prepared Pb(Zr0.3Ti0.7)O3 thin films deposited on IrO2/TiO2/SiO2/Si electrodes.
Thin Solid Films,
Vol. 467,
Issue. 1-2,
p.
104.
SONG, NAM-KYU
YUN, JONG-IN
and
JOO, SEUNG-KI
2004.
Modification of the Seed in SNLC and Its Effect on the Electrical Properties of PZT Thin Films.
Integrated Ferroelectrics,
Vol. 66,
Issue. 1,
p.
97.
Cao, Ziping
Ding, AiLi
He, Xiyun
Cheng, Wenxiu
and
Qiu, Pingsun
2005.
Preparation and characteristics of nanoporous PLZT ferroelectric thin films prepared via a one-step CSD process.
Journal of Crystal Growth,
Vol. 273,
Issue. 3-4,
p.
489.
Schneller, Theodor
Majumder, Subhasish B.
and
Waser, Rainer
2008.
Ceramics Science and Technology.
p.
443.
Song, Nam-Kyu
Yun, Jong-In
and
Joo, Seung-Ki
2008.
A study on the electrical properties of Pb(Zr, Ti)O3 thin films crystallized by the electrical resistive heating of Pt thin film.
Materials Research Bulletin,
Vol. 43,
Issue. 2,
p.
292.
Schwartz, Robert W.
and
Narayanan, Manoj
2013.
Chemical Solution Deposition of Functional Oxide Thin Films.
p.
343.
Schneller, Theodor
Majumder, Subhasish B.
and
Waser, Rainer
2013.
Ceramics Science and Technology.
p.
443.
Nittala, Krishna
Mhin, Sungwook
Dunnigan, Katherine M.
Robinson, Douglas S.
Ihlefeld, Jon F.
Kotula, Paul G.
Brennecka, Geoff L.
and
Jones, Jacob L.
2013.
Phase and texture evolution in solution deposited lead zirconate titanate thin films: Formation and role of the Pt3Pb intermetallic phase.
Journal of Applied Physics,
Vol. 113,
Issue. 24,
TRIAMNAK, Narit
BRENNECKA, Geoff L.
BROWN-SHAKLEE, Harlan J.
RODRIGUEZ, Mark A.
and
CANN, David P.
2014.
Phase formation of BaTiO<sub>3</sub>–Bi(Zn<sub>1/2</sub>Ti<sub>1/2</sub>)O<sub>3</sub> perovskite ceramics.
Journal of the Ceramic Society of Japan,
Vol. 122,
Issue. 1424,
p.
260.