The National Science and Technology Council of Taiwan(Grant No.NSTC 111-2811-E-516 A49-534)provided financial support for this study。
Magneto-electro-elastic(MEE)materials are a specific class of advanced smart materials that simultaneouslymanifest the coupling behavior under electric,magnetic,and mechanical loads.This unique combination ofpropertie...
the National Key R&D Program of China(Grants No.2022YFB3807601 and No.2020YFA0711504);the National Natural Science Foundation of China(Grants No.12274201,No.51721001,No.12104416,and No.52232001);L.B.thanks the Office of Naval Research(Grant No.N00014-21-1-2086);the Vannevar Bush Faculty Fellowship(VBFF)Grant No.N00014-20-1-2834 from the Department of Defense;is thankful for support from the MonArk Quantum Foundry supported by the National Science Foundation Q-AMASE-i program under NSF Award No.DMR-1906383.
Controlling the direction of ferromagnetism and antiferromagnetism by an electric field in single-phase multiferroics will open the door to the next generation of devices for spintronics and electronics.The typical ma...
supported by the National Natural Science Foundation of China(Grant Nos.12374172,11974045,61888102);the National Key Research and Development Program of China(Grants No.2020YFA0308800);“Strategic Priority Research Program(B)”of the Chinese Academy of Sciences(Grant No.XDB30000000).
Two-dimensional materials possessing intrinsic multiferroic properties have long been sought to harness the magnetoelectric coupling in nanoelectronic devices.Here,we report the achievement of robust type I multiferro...
supported by Natural Science Foundation of Guangdong Province,China (Grant Nos.2022A1515011990 and 2023A1515030086);National Natural Science Foundation of China (Grant Nos.11774239,11804230 and 61827815);National Key R&D Program of China (Grant No.2019YFB2204500);Shenzhen Science and Technology Innovation Commission (Grant Nos.JCYJ20220531102601004,KQTD20180412181422399 and JCYJ20180507181858539);High-Level University Construction Funds of SZU (Grant Nos.860-000002081209 and 860-000002110711)。
Two-dimensional(2D)antiferroelectric materials have raised great research interest over the last decade.Here,we reveal a type of 2D antiferroelectric(AFE)crystal where the AFE polarization direction can be switched by...
supported by the National Natural Science Foundation of China(Grant Nos.12172370,11874059 and 12174405);Natural Science Foundation of Zhejiang Provincial(Grant Nos.LY22E020012 and LR19A040002);National Key R&D Program of China(Grant No.2022YFB3807601),the Key Research Project of Zhejiang Laboratory(Grant No.2021PE0AC02);Zhejiang Laboratory Open Research Project(Grant No.K2022PE0AB06)and JSPS International Research Fellow(No.P22065).
Low-dimensional multiferroic metals characterized by the simultaneous coexistence of ferroelectricity,conductivity,and magnetism hold tremendous potential for scientific and technological endeavors.However,the mutuall...
This work was supported by the U.S.Office of Naval Research(ONR,N00014-20-1-2600);J.B.acknowledges the support from the Laboratory Directed Research and Development program at Sandia National Laboratories,a multi-mission laboratory managed and operated by National Technology and Engineering Solutions of Sandia,LLC,a wholly owned subsidiary of Honeywell International,Inc.,for the U.S.Department of Energy's National Nuclear Security Administration under contract DE-NA-003525;The high-resolution STEM imaging work was funded by the U.S.National Science Foundation(DMR-2016453);The article describes objective technical results and analysis.Any subjective views or opinions that might be expressed in the article do not necessarily represent the views of the U.S.Department of Energy or the United States Government。
Multiferroics are an intriguing family of materials due to the simultaneous presence of two ferroic orderings,namely,ferroelectricity and ferromagnetism.They are scientifically and technologically important and have n...
Project supported by the Support from DST, Govt of India for the FIST grant sanctioned to Vimala College Thrissur (Grant No. SR/FST/College-046/2011);Sultan Qaboos University for the support provided during this study
Multiferroic(BFO)nanoparticles doped with strontium with the general formula Bi1-xSrx FeO3(x=0,0.3,0.5,0.7)were synthesized using a modified sol-gel auto-combustion process.The structural,electrical,optical,and magnet...
This work was financially supported by the China Scholarship Council(CSC,Nos.201706370172 and 201706370217);The Grant Agency of the Slovak Academy of Sciences(No.2/0038/20);the Slovak Research and Development Agency through grants APVV-20-0072 and SK-CN-2017-0004(for V.Koval)are acknowledged.The National Natural Science Foundation of China(Nos.91963201 and 12174164);the 111 Project(No.B2006)(for C.Jia)are acknowledged.J.Wu and H.Yan thank the financial support from the Royal Society for a Newton Advanced Fellowship award(No.NAF\R1\201126).
1.Introduction,In the search for advanced multifunctional materials for next generation sensors and logic devices,magnetoelectric multifer-roics exhibiting simultaneously ferromagnetism and ferroelectric-ity within th...
the National Natural Science Foundation of China(Nos.12172303 and 12111530222);the Shaanxi Key Research and Development Program for International Cooperation and Exchanges(No.2022KWZ-23);the Fundamental Research Funds for the Central Universities(No.5000220118);the Center for Foreign Talent Introduction and Academic Exchange Project(No.BP0719007);the Yushan Fellowship,the Science and Technology Council of Taiwan of China(No.NSTC 111-2811-E-A49-534)。
In this paper,by defining a general potential energy for the multiphase coupled multiferroics and applying the minimum energy principle,the coupled governing equations are derived.This system of equations is then disc...
This work promotes the room temperature energy storage properties of the multiferroics.In this approach,impacts of PrFeO_(3)doping on PT-based solid solutions(Pb1−xPrxTi1−xFexO_(3),x=0.21,0.22,0.23,0.24,0.25 and 0.26)...