140
Views
107
CrossRef citations to date
0
Altmetric
Original Articles

Magnetoelectric PZT/ferrite composite material

, &
Pages 63-68 | Received 13 Sep 1993, Accepted 07 Feb 1994, Published online: 25 Feb 2011

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (7)

Kulwinder Kaur, Mandeep Singh, Jaspal Singh & Sanjeev Kumar. (2020) Multiferroic and magnetodielectric properties of (1-x)KNN-xCMgFO ceramic-based composites. Journal of Asian Ceramic Societies 8:4, pages 1027-1035.
Read now
Melvin M. Vopson. (2015) Fundamentals of Multiferroic Materials and Their Possible Applications. Critical Reviews in Solid State and Materials Sciences 40:4, pages 223-250.
Read now
Renu Rani, Sangeeta Singh, J.K. Juneja, K.K. Raina & Chandra Prakash. (2011) Structural, Dielectric, Ferroelectric and Ferromagnetic Properties of Ba0.9Sr0.1ZrxTi1-xO3+ 5% Ni0.8Zn0.2Fe2O4 Composite. Ferroelectrics Letters Section 38:4-6, pages 134-140.
Read now
M.B. Kothale, K.K. Patankar, A.V. Rao, V.L. Mathe & B.K. Chougule. (2005) Electrical Conduction and Magnetoelectric Effect in Cu0.4Co0.6Fe2O4−Ba0.8Pb0.2TiO3 ME Composites. Ferroelectrics 325:1, pages 143-149.
Read now
M.I. Bichurin, R.V. Petrov & Yu.V. Kiliba. (1997) Magnetoelectric microwave phase shifters. Ferroelectrics 204:1, pages 311-319.
Read now
M.I. Bichurin, I.A. Kornev, V.M. Petrov & I.V. Lisnevskaya. (1997) Investigation of magnetoelectric interaction in composite. Ferroelectrics 204:1, pages 289-297.
Read now

Articles from other publishers (100)

Ngo Duc Quan, Pham Van Tuan, Nguyen Duc Minh & Guus Rijnders. (2023) Influence of heterostructure on structure, electric and magnetic properties of Bi 0.5 (Na 0.80 ,K 0.20 ) 0.5 TiO 3 /BaZrO 3 films prepared by the sol–gel method . Japanese Journal of Applied Physics 62:4, pages 040901.
Crossref
Juanjuan Zhang, Xuhao Chen, Xiaoqiang Wang, Chao Fang & George J. Weng. (2023) Magnetic, mechanical, electrical properties and coupling effects of particle reinforced piezoelectric polymer matrix composites. Composite Structures 304, pages 116450.
Crossref
Inna V. Lisnevskaya, Inga A. Aleksandrova & Artem N. Savinov. (2022) Lead-Free Multiferroic Barium-Calcium Zirconate-Titanate & Doped Nickel Ferrite Composites. Journal of Composites Science 7:1, pages 2.
Crossref
Dariusz Bochenek, Artur Chrobak & Grzegorz Dercz. (2022) Influence of the Sintering Method on the Properties of a Multiferroic Ceramic Composite Based on PZT-Type Ferroelectric Material and Ni-Zn Ferrite. Materials 15:23, pages 8461.
Crossref
Taeyang Kim. (2022) Characteristics of a 2-2 Piezoelectric Composite Transducer Made by Magnetic Force Assembly. Crystals 12:5, pages 740.
Crossref
Sara Fattaheian Dehkordi & Yaghoub Tadi Beni. (2022) Size-dependent continuum-based model of a truncated flexoelectric/flexomagnetic functionally graded conical nano/microshells. Applied Physics A 128:4.
Crossref
Dhiren K. Pradhan, Shalini Kumari, Philip D. Rack & Ashok Kumar. 2022. Encyclopedia of Smart Materials. Encyclopedia of Smart Materials 229 238 .
Muhammad Mubashar Munir, Ali Raza Khan, Ghulam M. Mustafa, S. Kumail Abbas, M. Akram Raza, Shahid Atiq & Shahzad Naseem. (2021) Dielectric and magnetic variance in NiCo2O4 spinels mediated by Zn-substitution for efficient data and energy storage. Applied Physics A 127:7.
Crossref
Xianfeng Liang, Huaihao Chen & Nian X. Sun. (2021) Magnetoelectric materials and devices. APL Materials 9:4.
Crossref
S. S. Choudhari, S. B. Shelke, Khalid Mujassam Batoo, Syed Farooq Adil, A. B. Kadam, Ahamad Imran, Muhammad Hadi, Emad H. Raslan, Sagar E. Shirsath & R. H. Kadam. (2021) Mn0.7Zn0.3Fe2O4 + BaTiO3 composites: structural, morphological, magnetic, M–E effect and dielectric properties. Journal of Materials Science: Materials in Electronics 32:8, pages 10308-10319.
Crossref
V Gunawan, A Subagio & N A K Umiati. (2021) The dynamics of polarization and magnetization: Susceptibilities of magnetoelectric multiferroic heterostructure. Journal of Physics: Conference Series 1825:1, pages 012049.
Crossref
Most Sharmin, Subrin Mostafa Khan, A. K. M. Akther Hossain & Md. D. Rahaman. (2020) Synthesis and characterization of (1 − y) [0.996Na0.475K0.475Li0.05Sb0.05Nb0.95O3–0.004Bi0.95Nd0.05FeO3] + (y) [Co0.50Cu0.15Zn0.35Fe1.95Mn0.05O4] composites. Journal of Materials Science: Materials in Electronics 31:24, pages 22190-22223.
Crossref
Asghar Faramarzi Babadi & Yaghoub Tadi Beni. (2020) Size‐dependent continuum‐based model of a flexoelectric functionally graded cylindrical nanoshells. Mathematical Methods in the Applied Sciences.
Crossref
Nélson Pereira, Ana Catarina Lima, Senentxu Lanceros-Mendez & Pedro Martins. (2020) Magnetoelectrics: Three Centuries of Research Heading Towards the 4.0 Industrial Revolution. Materials 13:18, pages 4033.
Crossref
Amin Ghobadi, Yaghoub Tadi Beni & Hossein Golestanian. (2020) Nonlinear thermo-electromechanical vibration analysis of size-dependent functionally graded flexoelectric nano-plate exposed magnetic field. Archive of Applied Mechanics 90:9, pages 2025-2070.
Crossref
Ali Raza Khan, Ghulam M. Mustafa, S. Kumail Abbas, Shahid Atiq, Murtaza Saleem, Shahid M. Ramay & Shahzad Naseem. (2020) Flexible ferroelectric and magnetic orders in BiFeO3/MnFe2O4 nanocomposites to steer wide range energy and data storage capability. Results in Physics 16, pages 102956.
Crossref
X.L. Zhang, Q. Xu, X. Zhao, Y.H. Li & J. Yang. (2020) Nonlinear analyses of magneto-electro-elastic laminated beams in thermal environments. Composite Structures 234, pages 111524.
Crossref
C.S. Chitra Lekha, Ajith S. Kumar, S. Vivek, K. Venkata Saravanan, M.R. Anantharaman, K.P. Surendran, K. Nandakumar & Swapna S. Nair. (2019) Room temperature magnetoelectric properties of lead-free alkaline niobate based particulate composites. Ceramics International 45:7, pages 8115-8122.
Crossref
Xuan Ling Zhang, Xiao Chao Chen, Echuan Yang, Hai Feng Li, Jian Bo Liu & Ying Hui Li. (2018) Closed-form solutions for vibrations of a magneto-electro-elastic beam with variable cross section by means of Green’s functions. Journal of Intelligent Material Systems and Structures 30:1, pages 82-99.
Crossref
I. V. Lisnevskaya. (2018) Lead Zirconate Titanate/Modified Nickel Ferrite Magnetoelectric Composites Prepared from Submicron Precursors. Inorganic Materials 54:12, pages 1277-1290.
Crossref
Mohammad Malikan & Van Bac Nguyen. (2018) Buckling analysis of piezo-magnetoelectric nanoplates in hygrothermal environment based on a novel one variable plate theory combining with higher-order nonlocal strain gradient theory. Physica E: Low-dimensional Systems and Nanostructures 102, pages 8-28.
Crossref
Mohammad Malikan, Van Bac Nguyen & Francesco Tornabene. (2018) Electromagnetic forced vibrations of composite nanoplates using nonlocal strain gradient theory. Materials Research Express 5:7, pages 075031.
Crossref
Md. Jawed Ansaree, Upendra Kumar & Shail Upadhyay. (2018) Structural, dielectric and magnetic properties of particulate composites of relaxor (BaTi0.85Sn0.15O3) and ferrite (NiFe2O4) synthesized by gel-combustion method. Journal of Electroceramics 40:3, pages 257-269.
Crossref
P. Komalavalli & I. B. Shameem Banu. (2018) Investigation of multiferroic properties in nickel ferrite -barium titanate nanocomposites at room temperature. Investigation of multiferroic properties in nickel ferrite -barium titanate nanocomposites at room temperature.
Jon Gutiérrez, Andoni Lasheras, Pedro Martins, Nélson Pereira, Jose Barandiarán & Senentxu Lanceros-Mendez. (2017) Metallic Glass/PVDF Magnetoelectric Laminates for Resonant Sensors and Actuators: A Review. Sensors 17:6, pages 1251.
Crossref
I V Lisnevskaya, TG Lupeiko & KV Myagkaya. (2016) Investigation of the influence of various factors on the dielectric, piezoelectric, and magnetoelectric properties of 1-3, 3-1, and 1-1 multiferroic composites. Journal of Composite Materials 51:4, pages 507-517.
Crossref
Xin Huang, Huaiwu Zhang, Lijun Jia, Hua Su, Yuanming Lai & Jie Li. (2017) Influence of Co<sub>2</sub>O<sub>3</sub> additive on electromagnetic properties of NiCuZn/CaCu<sub>3</sub>Ti<sub>4</sub>O<sub>12</sub> composites. Transactions of the Materials Research Society of Japan 42:6, pages 155-157.
Crossref
RENUKA CHAUHAN & R C SRIVASTAVA. (2016) Various properties of the 0.6BaTiO 3 –0.4Ni 0 . 5 Zn 0 . 5 Fe 2 O 4 multiferroic nanocomposite. Pramana 87:4.
Crossref
Y.S. Li & E. Pan. (2016) Responses of an anisotropic magnetoelectroelastic and layered half-space to internal forces and dislocations. International Journal of Solids and Structures 94-95, pages 206-221.
Crossref
R. Ansari, R. Gholami & H. Rouhi. (2015) Size-dependent nonlinear forced vibration analysis of magneto-electro-thermo-elastic Timoshenko nanobeams based upon the nonlocal elasticity theory. Composite Structures 126, pages 216-226.
Crossref
Venkata Ramana Mudinepalli, S.-H. Song, M. Ravi, J.-Q. Li & B.S. Murty. (2015) Multiferroic properties of lead-free Ni0.5Zn0.5Fe1.9O4−δ−Na0.5Bi0.5TiO3 composites synthesized by spark plasma sintering. Ceramics International 41:5, pages 6882-6888.
Crossref
Andoni LasherasJon GutiérrezJose Manuel BarandiaránD.A. Shishkin & A.P. Potapov. (2015) Parameters Affecting the Magnetoelectric Response of Magnetostrictive/Piezoelectric Polymer Laminates. Key Engineering Materials 644, pages 40-44.
Crossref
John G. WebsterJan Chi Yang, Ying Hao Chu & Ramamoorthy Ramesh. 1999. Wiley Encyclopedia of Electrical and Electronics Engineering. Wiley Encyclopedia of Electrical and Electronics Engineering 1 15 .
Fengde D. Ma, Yongmei M. Jin, Yu U. Wang, S.L. Kampe & Shuxiang Dong. (2014) Phase field modeling and simulation of particulate magnetoelectric composites: Effects of connectivity, conductivity, poling and bias field. Acta Materialia 70, pages 45-55.
Crossref
Rishikesh Pandey, Braj Raj Meena & Akhilesh Kumar Singh. (2014) Structural and dielectric characterization on multiferroic xNi0.9Zn0.1Fe2O4/(1−x)PbZr0.52Ti0.48O3 particulate composite. Journal of Alloys and Compounds 593, pages 224-229.
Crossref
M. Kanakadurga, P. Raju & S.R. Murthy. (2013) Preparation and characterization of BaTiO3+MgCuZnFe2O4 nanocomposites. Journal of Magnetism and Magnetic Materials 341, pages 112-117.
Crossref
Yanqing Liu, Yuhan Wu, Dan Li, Yongjun Zhang, Jing Zhang & Jinghai Yang. (2012) A study of structural, ferroelectric, ferromagnetic, dielectric properties of NiFe2O4–BaTiO3 multiferroic composites. Journal of Materials Science: Materials in Electronics 24:6, pages 1900-1904.
Crossref
Mohamed Bakr Mohamed & Karimat El-Sayed. (2013) Microstructure, magnetic and electric properties of BaTiO3–Ni0.5Zn0.5Fe1.5Cr0.5O4 nanocomposite. Materials Research Bulletin 48:5, pages 1778-1783.
Crossref
Haibo Yang, Yanyan Yang, Ling Lu & Ying Lin. (2013) Low-temperature sintering and properties of Bi4Ti3O12/Ni0.37Cu0.20Zn0.43Fe1.92O3.88 composites. Journal of Alloys and Compounds 555, pages 402-404.
Crossref
Jon GutiérrezAndoni LasherasJose Manuel BarandiaranJose Luis VilasAlberto MaceirasLuis Manuel León. (2013) Improving the Performance of High Temperature Piezopolymers for Magnetoelectric Applications. Key Engineering Materials 543, pages 439-442.
Crossref
Lili Yuan, Jianke Du, Tingfeng Ma & Ji Wang. (2013) Effects of viscous liquid on SH-SAW in layered magnetoelectric structures. Ultrasonics 53:3, pages 808-814.
Crossref
Jon Gutierrez, Andoni Lasheras, Jose Manuel Barandiaran, Jose Luis Vilas, María San Sebastian & Luis Manuel Leon. (2013) Improving the Magnetoelectric Response of Laminates Containing High Temperature Piezopolymers. IEEE Transactions on Magnetics 49:1, pages 42-45.
Crossref
Biao WangBiao Wang. 2013. Mechanics of Advanced Functional Materials. Mechanics of Advanced Functional Materials 377 441 .
Jon Gutiérrez, Andoni Lasheras, Jose Manuel Barandiarán, Jose Luis Vilas, María San Sebastián & Luis Manuel León. (2012) Temperature Response of Magnetostrictive/Piezoelectric Polymer Magnetoelectric Laminates. MRS Proceedings 1398.
Crossref
Hong-li Guo, Xue-dong Li, Guo Liu, Shuo-yi Ma, Ding-quan Xiao & Jian-guo Zhu. (2012) Simulation of substrate clamping on the properties of piezoelectric/piezomagnetic laminated composites. Ceramics International 38, pages S435-S438.
Crossref
Lin-lin Liu, Yi-ping Wang, Wang-jie Qian, Bing Wang & Ying Yang. (2011) Preparation and properties of BaTiO<inf>3</inf>/ CoFe<inf>2</inf>O<inf>4</inf> composite ceramics. Preparation and properties of BaTiO<inf>3</inf>/ CoFe<inf>2</inf>O<inf>4</inf> composite ceramics.
. 2011. Magnetoelectricity in Composites. Magnetoelectricity in Composites 145 190 .
Jon GutiérrezAndoni LasherasJose Manuel BarandiaranJose Luis VilasMaría San SebastiánLuis Manuel León. (2011) Temperature Response of Magnetostrictive/Piezoelectric Polymer Magnetoelectric Laminates. Key Engineering Materials 495, pages 351-354.
Crossref
Yang Zheng, Dan Xie, Jing Ma, Tian Ling Ren & Li Tian Liu. (2011) Micro Magnetic Field Sensor Based On Terfenol-D/PZT/Terfenol-D Magnetoelectric Composites. Key Engineering Materials 483, pages 190-194.
Crossref
Amit Kumar & K.L. Yadav. (2011) Synthesis and characterization of MnFe2O4–BiFeO3 multiferroic composites. Physica B: Condensed Matter 406:9, pages 1763-1766.
Crossref
M. VENKATA RAMANA, N. RAMAMANOHAR REDDY, K. V. SIVA KUMAR, V. R. K. MURTHY & B. S. MURTY. (2011) MAGNETO-ELECTRIC EFFECT IN MULTIFERROIC Ni 0.93 Co 0.02 Mn 0.05 Fe 1.95 O 4-δ / PbZr 0.52 Ti 0.48 O 3 PARTICULATE COMPOSITES: DIELECTRIC, PIEZOELECTRIC PROPERTIES . Modern Physics Letters B 25:05, pages 345-358.
Crossref
LI-NA SU, PENG LIU, YING HE, CHUN-HONG MU, JIAN-PING ZHOU, LEI CAO, CHENG LIU, HUAI-WU ZHANG & GUO-GUANG YAO. (2011) ELECTRICAL AND MAGNETIC PROPERTIES OF LOW-TEMPERATURE SINTERED x TiO 2 +(1-x) Ni 0.2 Cu 0.2 Zn 0.62 O ( Fe 2 O 3 ) 0.98 CERAMICS . Modern Physics Letters B 24:29, pages 2869-2878.
Crossref
Carlos A. F. Vaz, Jason Hoffman, Charles H. Ahn & Ramamoorthy Ramesh. (2010) Magnetoelectric Coupling Effects in Multiferroic Complex Oxide Composite Structures. Advanced Materials 22:26-27, pages 2900-2918.
Crossref
Li-na Su, Peng Liu, Ying He, Jian-ping Zhou, Lei Cao, Cheng Liu & Huai-wu Zhang. (2010) Electrical and magnetic properties of low-temperature sintered xBa0.6Sr0.4TiO3+(1−x)Ni0.2Cu0.2Zn0.62O(Fe2O3)0.98 composite ceramics. Journal of Alloys and Compounds 494:1-2, pages 330-335.
Crossref
M. Venkata Ramana, N. Ramamanohar Reddy, B. S. Murty, V. R. K. Murthy & K. V. Siva Kumar. (2010) Ferromagnetic-Dielectric Ni 0.5Z n 0.5 Fe 1.9 O 4−δ /PbZr 0.52 Ti 0.48 O 3 Particulate Composites: Electric, Magnetic, Mechanical, and Electromagnetic Properties . Advances in Condensed Matter Physics 2010, pages 1-14.
Crossref
Weiwei Ling, Huaiwu Zhang, Yuanqiang Song, Yingli Liu, Yuanxun Li & Hua Su. (2009) Low-temperature sintering and electromagnetic properties of ferroelectric–ferromagnetic composites. Journal of Magnetism and Magnetic Materials 321:18, pages 2871-2876.
Crossref
Y. L. Dong, P. Y. Du, W. J. Weng, G. R. Han & G. L. Zhao. (2007) In situ formation of sol-gel derived PbTiO3/NiFe2O4 biphase thin film. Journal of Electroceramics 21:1-4, pages 327-330.
Crossref
Shuhui Yu, Haitao Huang, Limin Zhou, Yin Ye & Shanming Ke. (2008) Structure and properties of PMN–PT/NZFO laminates and composites. Ceramics International 34:4, pages 701-704.
Crossref
S.S. Chougule & B.K. Chougule. (2008) Response of dielectric behaviour on ferroelectric rich (y) Ni0.8Zn0.2Fe2O4+(1−y) PZT ME composites. Materials Chemistry and Physics 108:2-3, pages 408-412.
Crossref
YANLING DONG, XIN WANG, XIAOYAN CHAI, WENJIAN WENG, GAORONG HAN & PIYI DU. (2012) DIELECTRIC AND FERROELECTRIC BEHAVIORS OF NOVEL PbTiO 3 / NiFe 2 O 4 THIN FILMS PREPARED BY SOL–GEL METHOD . Surface Review and Letters 15:01n02, pages 7-11.
Crossref
Junyi Zhai, Zengping Xing, Shuxiang Dong, Jiefang Li & Dwight Viehland. (2008) Magnetoelectric Laminate Composites: An Overview. Journal of the American Ceramic Society 91:2, pages 351-358.
Crossref
Ce-Wen Nan, M. I. Bichurin, Shuxiang Dong, D. Viehland & G. Srinivasan. (2008) Multiferroic magnetoelectric composites: Historical perspective, status, and future directions. Journal of Applied Physics 103:3.
Crossref
Carmen-Gabriela Stefanita. 2008. From Bulk to Nano. From Bulk to Nano 41 70 .
M Venkata Ramana, G Sreenivasulu, N Ramamanohar Reddy, K V Siva Kumar, B S Murty & V R K Murthy. (2007) Internal friction and longitudinal modulus behaviour of multiferroic PbZr 0.52 Ti 0.48 O 3 +Ni 0.93 Co 0.02 Mn 0.05 Fe 1.95 O 4−δ particulate composites . Journal of Physics D: Applied Physics 40:23, pages 7565-7571.
Crossref
S. A. Lokare, R. S. Devan, D. R. Patil, Y. D. Kolekar, K. K. Patankar & B. K. Chougule. (2007) Electrical properties of Ni0.93Co0.02Mn0.05Fe2O4 + BaTiO3 ME composites. Journal of Materials Science 42:24, pages 10250-10253.
Crossref
Dandan Wu, Weihua Gong, Haijin Deng & Ming Li. (2007) Magnetoelectric composite ceramics of nickel ferrite and lead zirconate titanate via in situ processing . Journal of Physics D: Applied Physics 40:16, pages 5002-5005.
Crossref
Zhi-Guo Gu, Xin-Hui Zhou, Yang-Bo Jin, Ren-Gen Xiong, Jing-Lin Zuo & Xiao-Zeng You. (2007) Crystal Structures and Magnetic and Ferroelectric Properties of Chiral Layered Metal−Organic Frameworks with Dicyanamide as the Bridging Ligand. Inorganic Chemistry 46:14, pages 5462-5464.
Crossref
Yang Bai, Ji Zhou, Zhilun Gui, Longtu Li & Lijie Qiao. (2007) A ferromagnetic ferroelectric cofired ceramic for hyperfrequency. Journal of Applied Physics 101:8.
Crossref
K.K. Patankar, S.A. Kanade, D.S. Padalkar & B.K. Chougule. (2007) Complex impedance analyses and magnetoelectric effect in ferrite–ferroelectric composite ceramics. Physics Letters A 361:6, pages 472-477.
Crossref
Jianhong Shen, Ji Zhou, Bo Li & Longtu Li. (2006) Ferroelectric and dielectric properties of [Pb(Ni1/3Nb2/3)O3–PbTiO3]/[(Ni0.2Cu0.2Zn0.6)Fe2O4] composites. Materials Letters 60:8, pages 1071-1075.
Crossref
Jianhong Shen, Yang Bai, Ji Zhou & Longtu Li. (2005) Magnetic Properties of a Novel Ceramic Ferroelectric–Ferromagnetic Composite. Journal of the American Ceramic Society 88:12, pages 3440-3443.
Crossref
S.R. Kulkarni, C.M. Kanamadi & B.K. Chougule. (2005) Dielectric and magnetoelectric properties of (x)Ni0.8Co0.1Cu0.1Fe2O4/(1−x)PbZr0.8Ti0.2O3 composites. Materials Research Bulletin 40:12, pages 2064-2072.
Crossref
S. R. Kulkarni, C. M. Kanamadi, K. K. Patankar & B. K. Chougule. (2005) Magnetic properties and magnetoelectric effect in Ni0.8Co0.1Cu0.1Fe2O4 + PbZr0.2Ti0.8O3 composites. Journal of Materials Science 40:21, pages 5691-5694.
Crossref
K.K. Patankar, S.S. Joshi & B.K. Chougule. (2005) Dielectric behaviour in magnetoelectric composites. Physics Letters A 346:5-6, pages 337-341.
Crossref
ChongGui Zhong, RenWang Mu & JingHuai Fang. (2005) A study of magnetodielectric effects in the ferroelectric antiferromagnetic system. Solid State Communications 135:11-12, pages 759-764.
Crossref
Xian-Ming Liu, Shao-Yun Fu & Chuan-Jun Huang. (2005) Synthesis and magnetic characterization of novel CoFe2O4–BiFeO3 nanocomposites. Materials Science and Engineering: B 121:3, pages 255-260.
Crossref
S. Q. Ren, L. Q. Weng, S.-H. Song, F. Li, J. G. Wan & M. Zeng. (2005) BaTiO3/CoFe2O4 particulate composites with large high frequency magnetoelectric response. Journal of Materials Science 40:16, pages 4375-4378.
Crossref
S. Narendra Babu, T. Bhimasankaram & S. V. Suryanarayana. (2005) Magnetoelectric effect in metal-PZT laminates. Bulletin of Materials Science 28:5, pages 419-422.
Crossref
S.L. Kadam, C.M. Kanamadi, K.K. Patankar & B.K. Chougule. (2005) Dielectric behaviour and magnetoelectric effect in Ni0.5Co0.5Fe2O4+Ba0.8Pb0.2TiO3 ME composites. Materials Letters 59:2-3, pages 215-219.
Crossref
ChongGui Zhong, JingHuai Fang & Qing Jiang. (2004) Magnetodielectric effects in the ferroelectric ferromagnet BiMnO 3 . Journal of Physics: Condensed Matter 16:49, pages 9059-9068.
Crossref
Xiwei Qi, Ji Zhou, Baorang Li, Yingchun Zhang, Zhenxing Yue, Zhilun Gui & Longtu Li. (2005) Preparation and Spontaneous Polarization–Magnetization of a New Ceramic Ferroelectric–Ferromagnetic Composite. Journal of the American Ceramic Society 87:10, pages 1848-1852.
Crossref
X. Qi, J. Zhou, Z. Yue, Z. Gui, L. Li & S. Buddhudu. (2004) A Ferroelectric Ferromagnetic Composite Material with Significant Permeability and Permittivity. Advanced Functional Materials 14:9, pages 920-926.
Crossref
M. Zeng, J. G. Wan, Y. Wang, H. Yu, J.-M. Liu, X. P. Jiang & C. W. Nan. (2004) Resonance magnetoelectric effect in bulk composites of lead zirconate titanate and nickel ferrite. Journal of Applied Physics 95:12, pages 8069-8073.
Crossref
Junyi Zhai, Ning Cai, Zhan Shi, Yuanhua Lin & Ce-Wen Nan. (2004) Coupled magnetodielectric properties of laminated PbZr0.53Ti0.47O3/NiFe2O4 ceramics. Journal of Applied Physics 95:10, pages 5685-5690.
Crossref
Junyi Zhai, Ning Cai, Zhan Shi, Yuanhua Lin & Ce-Wen Nan. (2004) Magnetic-dielectric properties of NiFe 2 O 4 /PZT particulate composites . Journal of Physics D: Applied Physics 37:6, pages 823-827.
Crossref
Xiwei Qi, Ji Zhou, Zhenxing Yue, Zhilun Gui & Longtu Li. (2004) Investigation of magnetic properties of Ni0.2Cu0.2Zn0.6Fe1.96O4–BaTiO3 composites. Journal of Magnetism and Magnetic Materials 269:3, pages 352-358.
Crossref
N. Cai, J. Zhai, C.-W. Nan, Y. Lin & Z. Shi. (2003) Dielectric, ferroelectric, magnetic, and magnetoelectric properties of multiferroic laminated composites. Physical Review B 68:22.
Crossref
C.-W. Nan, N. Cai, L. Liu, J. Zhai, Y. Ye & Y. Lin. (2003) Coupled magnetic–electric properties and critical behavior in multiferroic particulate composites. Journal of Applied Physics 94:9, pages 5930-5936.
Crossref
Jun Yi Zhai, Ning Cai, Li Liu, Yuan Hua Lin & Ce Wen Nan. (2003) Dielectric behavior and magnetoelectric properties of lead zirconate titanate/Co-ferrite particulate composites. Materials Science and Engineering: B 99:1-3, pages 329-331.
Crossref
G. Srinivasan, E. T. Rasmussen & R. Hayes. (2003) Magnetoelectric effects in ferrite-lead zirconate titanate layered composites: The influence of zinc substitution in ferrites. Physical Review B 67:1.
Crossref
C.-W. Nan, L. Liu, N. Cai, J. Zhai, Y. Ye, Y. H. Lin, L. J. Dong & C. X. Xiong. (2002) A three-phase magnetoelectric composite of piezoelectric ceramics, rare-earth iron alloys, and polymer. Applied Physics Letters 81:20, pages 3831-3833.
Crossref
M. I. Bichurin, V. M. Petrov, Yu. V. Kiliba & G. Srinivasan. (2002) Magnetic and magnetoelectric susceptibilities of a ferroelectric/ferromagnetic composite at microwave frequencies. Physical Review B 66:13.
Crossref
K.K Patankar, P.D Dombale, V.L Mathe, S.A Patil & R.N Patil. (2001) AC conductivity and magnetoelectric effect in MnFe1.8Cr0.2O4–BaTiO3 composites. Materials Science and Engineering: B 87:1, pages 53-58.
Crossref
M. I. Bichurin, I. A. Kornev, V. M. Petrov, A. S. Tatarenko, Yu. V. Kiliba & G. Srinivasan. (2001) Theory of magnetoelectric effects at microwave frequencies in a piezoelectric/magnetostrictive multilayer composite. Physical Review B 64:9.
Crossref
K.K Patankar, V.L Mathe, R.P Mahajan, S.A Patil, Ram Manohar Reddy & K.V SivaKumar. (2001) Dielectric behaviour and magnetoelectric effect in CuFe2O4–Ba0.8Pb0.2TiO3 composites. Materials Chemistry and Physics 72:1, pages 23-29.
Crossref
Ce Wen Nan, Ming Li, Xiqiao Feng & Shouwen Yu. (2001) Possible giant magnetoelectric effect of ferromagnetic rare-earth–iron-alloys-filled ferroelectric polymers. Applied Physics Letters 78:17, pages 2527-2529.
Crossref
Ce Wen Nan, Ming Li & Jin H. Huang. (2001) Calculations of giant magnetoelectric effects in ferroic composites of rare-earth–iron alloys and ferroelectric polymers. Physical Review B 63:14.
Crossref
V.L. Mathe, K.K. Patankar, U.V. Jadhav, A.N. Patil, S.D. Lotake & S.A. Patil. (2001) Studies on structural, dielectric and magnetoelectric properties in CuFe1.8Cr0.2O4– Pb(Mg1/3V2/3)O3 composites. Ceramics International 27:5, pages 531-535.
Crossref
R. P. Mahajan, K. K. Patankar, M. B. Kothale & S. A. Patil. (2000) Conductivity, dielectric behaviour and magnetoelectric effect in copper ferrite-barium titanate composites. Bulletin of Materials Science 23:4, pages 273-279.
Crossref
K.K. Patankar, S.A. Patil, K.V. Sivakumar, R.P. Mahajan, Y.D. Kolekar & M.B. Kothale. (2000) AC conductivity and magnetoelectric effect in CuFe1.6Cr0.4O4–BaTiO3 composite ceramics. Materials Chemistry and Physics 65:1, pages 97-102.
Crossref

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.