Crossref Citations
This article has been cited by the following publications. This list is generated based on data provided by
Crossref.
Du, Huiling
Wang, Hong
and
Yao, Xi
2000.
Electro-plating technology of high performance low sintering BZN based MLC.
Ferroelectrics Letters Section,
Vol. 28,
Issue. 1-2,
p.
35.
Huiling, Du
and
Xi, Yao
2001.
Investigation of dielectric properties of Bi2O3-ZnO-Nb2O5-Sb2O3based pyrochlores.
Ferroelectrics,
Vol. 262,
Issue. 1,
p.
83.
Wang, Hong
and
Yao, Xi
2001.
Structure and dielectric properties of pyrochlore–fluorite biphase ceramics in the Bi2O3–ZnO–Nb2O5 system.
Journal of Materials Research,
Vol. 16,
Issue. 1,
p.
83.
Huiling, Du
and
Xi, Yao
2002.
Synthesis and dielectric properties development of new thermal stable bismuth pyrochlores.
Journal of Physics and Chemistry of Solids,
Vol. 63,
Issue. 11,
p.
2123.
Huiling, Du
and
Xi, Yao
2002.
Dielectric relaxation characteristics of bismuth zinc niobate pyrochlores containing titanium.
Physica B: Condensed Matter,
Vol. 324,
Issue. 1-4,
p.
121.
Kamba, Stanislav
Porokhonskyy, Viktor
Pashkin, Alexej
Bovtun, Viktor
Petzelt, Jan
Nino, Juan C.
Trolier-McKinstry, Susan
Lanagan, Michael T.
and
Randall, Clive A.
2002.
Anomalous broad dielectric relaxation inBi1.5Zn1.0Nb1.5O7pyrochlore.
Physical Review B,
Vol. 66,
Issue. 5,
Ang, Chen
Yu, Zhi
Youn, H. J.
Randall, C. A.
Bhalla, A. S.
Cross, L. E.
Nino, J.
and
Lanagan, M.
2002.
Low-temperature dielectric relaxation in the pyrochlore (Bi3/4Zn1/4)2(Zn1/4Ta3/4)2O7 compound.
Applied Physics Letters,
Vol. 80,
Issue. 25,
p.
4807.
Ang, Chen
Yu, Zhi
Youn, H. J.
Randall, C. A.
Bhalla, A. S.
Cross, L. E.
and
Lanagan, M.
2003.
Dielectric properties of Bi2O3–ZnO–Ta2O5 pyrochlore and zirconolite structure ceramics.
Applied Physics Letters,
Vol. 82,
Issue. 21,
p.
3734.
Su, Wei-Fang
and
Lin, Shin-Chih
2003.
Interfacial behaviour between Bi1.5ZnNb1.5O7·0.02V2O5 and Ag.
Journal of the European Ceramic Society,
Vol. 23,
Issue. 14,
p.
2593.
Hong, Wang
Huiling, Du
and
Xi, Yao
2003.
Structural study of Bi2O3-ZnO-Nb2O5 based pyrochlores.
Materials Science and Engineering: B,
Vol. 99,
Issue. 1-3,
p.
20.
Liu, X.Q.
and
Chen, X.M.
2004.
Dielectric and mechanical characteristics of lanthanum aluminate ceramics with strontium niobate addition.
Journal of the European Ceramic Society,
Vol. 24,
Issue. 7,
p.
1999.
Du, Huiling
and
Yao, Xi
2005.
Investigations on structural evolution and dielectric characteristics of high performance Bi-based dielectrics.
Materials Research Bulletin,
Vol. 40,
Issue. 9,
p.
1527.
Liu, Yun
Withers, Ray L.
Welberry, T.R.
Wang, Hong
and
Du, Huiling
2006.
Crystal chemistry on a lattice: The case of BZN and BZN-related pyrochlores.
Journal of Solid State Chemistry,
Vol. 179,
Issue. 7,
p.
2141.
Du, Huiling
and
Yao, Xi
2007.
Cadmium substituted (Bi1.5ZnNb1.5)O7 dielectric ceramics.
Journal of Materials Science,
Vol. 42,
Issue. 3,
p.
979.
Wang, Hong
and
Yao, X.
2008.
Handbook of Advanced Dielectric, Piezoelectric and Ferroelectric Materials.
p.
503.
Zhou, Di
Randall, Clive A.
Wang, Hong
Pang, Li‐Xia
and
Yao, Xi
2009.
Microwave Dielectric Properties Trends in a Solid Solution (Bi1−xLnx)2Mo2O9 (Ln=La, Nd, 0.0≤x≤0.2) System.
Journal of the American Ceramic Society,
Vol. 92,
Issue. 12,
p.
2931.
LI, Zai-Ying
DING, Shi-Hua
and
SONG, Tian-Xiu
2010.
Influence of Properties of Bi<SUB>2</SUB> (Zn<SUB>1/3</SUB>Nb<SUB>2/3</SUB>)<SUB>2</SUB>O<SUB>7</SUB> Ceramics Doped with Na-Ni.
Journal of Inorganic Materials,
Vol. 25,
Issue. 8,
p.
825.
Liu, Weihong
and
Wang, Hong
2011.
Sintering and dielectric properties of Bi1.5ZnNb1.5O7 cubic pyrochlore ceramics via high-energy milling technology.
Journal of Electroceramics,
Vol. 27,
Issue. 3-4,
p.
209.
Xiaojing, Yang
Xiaobing, Liu
Shihua, Ding
Yu, Yu
and
Xi, Yao
2013.
Frequency fine adjusting of LTCC microwave resonators based on BZN ceramics.
Ceramics International,
Vol. 39,
Issue. ,
p.
S669.
Dong, H. L.
Li, L. X.
Yu, S. H.
Jin, Y. X.
and
Xu, D.
2014.
Structural characterization and frequency response of sol–gel derived Bi3/2MgNb3/2O7 thin films.
Journal of Materials Science: Materials in Electronics,
Vol. 25,
Issue. 11,
p.
5119.