Magnetoresistance(MR)is a fundamental transport phenomenon crucial for reading magnetic states.It also plays a key role in understanding how time-reversal symmetry breaking affects electrical resistance.Landmark disco...
the National Natural Science Foundation of China(Grant No.61974162).
Measuring the magneto-conductivity induced from impurities may help determine the impurity distribution and reveal the structure of a Weyl semimetal sample.To verify this,we utilize the Gaussian random disorder to sim...
Project supported by the National Key Research and Development Program of China (Grant Nos.2019YFA0704900 and 2023YFB3809400);the National Natural Science Foundation of China (Grant Nos.52130203 and 52172232);the Basic and Applied Basic Research Foundation of Guangdong Province (Grant No.2022B1515120005)。
The method to combine thermoelectric(TE)and magnetocaloric(MC)cooling techniques lies in developing a new material that simultaneously possesses a large TE and good MC cooling performance.In this work,using n-type Bi_...
supported by the National Natural Science Foundation of China(12274050).
The discovery of novel two-dimensional(2D)multiferroic materials is attractive due to their potential for the realization of information storage and logic devices.Although many approaches have been explored to simulta...
supported by the National Natural Science Foundation of China (Grant No. 12104458);Foshan (Southern China) Institute for New Materials (Grant No. 2021AYF25021)。
Enhancing the tunneling magneto-Seebeck(TMS) ratio and uncovering its underlying mechanism are greatly demanded in spin caloritronics.The magnitude and sign of the TMS effect depend on the type of atom and the stackin...
supported by the National Natural Science Foundation of China(NOs.12202134 and 12372154);the Natural Science Foundation of Hebei Province(NO.A2024407001);the Science Research Project of Hebei Education Department(No.BJK2024032).
Two-dimensional(2D)multiferroic materials are recognized as promising candidates for nextgeneration nanodevices due to their tunable magnetoelectric coupling and distinctive physical phenomena.In this study,we propose...
supported by the Ministry of Science and Technology of the People’s Republic of China(no.2022YFA1402903);the National Natural Science Foundation of China under Grant No.12004160 and 12374059;Z.G.also acknowledges the financial support from Shenzhen Science and Technology Program(Grant No.KQTD20190929173815000);Guangdong Innovative and Entrepreneurial Research Team Program(Grant No.2019ZT08C044);Part of this work was supported by the Quantum Science Center of Guangdong-Hong Kong-Macao Greater Bay Area(Guangdong)and the Open Project of Guangdong Provincial Key Laboratory of Magnetoelectric Physics and Devices,No.2022B1212010008;L.B.acknowledges support from the Vannevar Bush Faculty Fellowship(VBFF,Grant No.N00014-20-1-2834)from the Department of Defense;Computational time was supported by the Center for Computational Science and Engineering of Southern University of Science and Technology and the Major Science and Technology Infrastructure Project of Material Genome Big-science Facilities Platform supported by Municipal Development and Reform Commission of Shenzhen.
Strong magnetoelectric effects in single-phase two-dimensional(2D)materials are extremely rare in nature.Here by first-principles calculations,we find a strong magnetoelectric coupling in polar stacking bilayer Hf_(2)...
supported by the National Key R&D Program of China(2020YFA0308900);the Science,Technology and Innovation Commission of Shenzhen Municipality(ZDSYS20190902092905285);the Guangdong Innovative and Entrepreneurial Research Team Program(2017ZT07C062);the Guangdong Provincial Key Laboratory for Computational Science and Material Design(2019B030301001).
The topological magnetoelectric effect(TME)is a hallmark response of the topological field theory,which provides a paradigm shift in the study of emergent topological phenomena.However,its direct observation is yet to...
supported by the National Natural Science Foundation of China(Grant Nos.52103210,62022040,51972171,and 61935017);Department of Science and Technology of Jilin Province(20230101363JC);Scientific Research Fund for Doctor of Weifang University(2020BS17);the Science and Technology Huimin Plan of Weifang High-tech Zone(2020KJHM02).
Developing open-shell singlet(OS)diradicals with high luminescent properties and exceptional single-molecule magnetoluminescence(ML)performance is extremely challenging.Herein,we propose a concept to enhance luminesce...
supported by the National Key R&D Program of China(Grant No.2021YFA1600203);the National Natural Science Foundation of China(Grant Nos.U2032218,11904116,and 12111530283);the Plan for Major Provincial Science&Technology Project(Grant No.202003a05020018);supported by the High Magnetic Field Laboratory of Anhui Province。
We utilized magnetic fields as an efficient tool to manipulate the orientation and electromagnetic properties of graphite micro-flakes(GMFs).As a result,we successfully developed a GMF double-layer homo-structure,whic...