Европейская академия
естественных наук

Hannover E.V.

 
 

Qiao LiangQiao Liang


Prof. Qiao Liang is a Fellow of the Royal Society of Chemistry (FRSC), currently serves as a professor at the School of Physics, University of Electronic Science and Technology (UEST), Director of the Institute of Condensed Matter Physics, and is recipient of the National Young Talents, Sichuan Thousand Talents Program, Sichuan Academic and Technical Leaders, and Sichuan Outstanding Young Talents in Science and Technology.

He is mainly engaged in the cutting-edge intersection and application research of condensed matter physics and functional materials, energy devices, and electronic information, including superconducting magnetic physics, low-dimensional quantum materials, opto-electromagnetic functional materials and devices, thin-film technology and electronic structure, epitaxial growth, and surface-interface modulation, and new energy materials and devices. A series of high-quality scientific research results have been achieved: the discovery of the key role of H element in nickel-based superconductivity and the exotic electronic states of the interstitial s orbitals (Nature 615, 50 (2023)) has changed the basic knowledge of the academic community about nickel-based superconducting materials, and the research results have been reported by the China News Network, National Natural Science Foundation of China Network, Science Network, Science and Technology Daily, etc., as well as by the Chinese Science Daily's front-page reports, and interviewed by Thepaper.cn and other media; the first to discover the charge density wave of nickel-based superconducting matrices (Nat. Mater. 21, 1116 (2022)); the discovery of the singular interfacial quantum state of ferroelectric superlattices due to the discontinuity of the ferroelectric polarization, and the proposal of a brand new orthogonal carrier separation model, which dramatically reduces the composite of photogenerated carriers (PRL 126, 176401(2021)); and made important contributions in the field of artificial regulation of interface electronic structure and physical properties.

He has been published in Nature, Nat. Mater., Nat. Commun., Matter, Phys. Rev. Lett., Adv. Mater., Adv. Func. Mater., Appl. Catal. B, Nano Energy, Nano Lett., ACS Nano, and other international first-class journals published more than 170 research papers, including 15 ESI highly cited papers, the paper has been cited more than 7,000 times, H-index = 46; the research results were awarded the second prize of the Chinese Society for Materials Research and the first prize of the excellent papers of the Sichuan-Chongqing Science and Technology Conference. He has been invited to give invited or oral presentations at international conferences, universities, and national laboratories in the United States, and his research results have been reported more than ten times by the news network media and international academic research conferences. He has undertaken 5 national research projects.

He is a member of the editorial boards of Electron, Nano Mater., Sci. Rep., Front. Mater., J. Mater. Sci. Eng. A & B, etc. He also provide reviews for the National Natural Science Foundation of China, the Yangtze River Scholars of the Ministry of Education, and the Natural Science Achievement Award of the Ministry of Education; a reviewer for the National Synchrotron Radiation Light Center project in the United States of America, Royal Society of Chemistry awards in the United Kingdom, and projects of the Polish Academy of Sciences; and the session chair of European Society of Materials Spring Annual Meeting (2015) and the Singapore Advanced Materials Conference (2023). He has been a long-term invited reviewer for Nat. Phys., Nat. Mater., Phys. Rev. Lett., Adv. Mater., and other top international journals.



 

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