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Yuanxun Li
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Professor Supervisor of Doctorate Candidates
Name (Simplified Chinese):
李元勋
Name (English):
Yuanxun Li
Name (Pinyin):
liyuanxun
E-Mail:
liyuanxun@uestc.edu.cn
Date of Employment:
2001-09-01
School/Department:
University of Electronic Science and Technology of China
Education Level:
With Certificate of Graduation for Doctorate Study
Gender:
Male
Contact Information:
liyuanxun@uestc.edu.cn; 0086-13709092550
Degree:
Doctor of Engineering
Status:
Professor
Alma Mater:
University of Electronic Science and Technology of China
Honors and Titles:
获得省部级奖项9项
Discipline:
Electronic Science and Technology Materials Science and Engineering
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Current position:
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Paper Publications
[1] Nickel-modified zinc molybdate low temperature co-fired ceramics for two-dimensional beam splitting of array antenna in X-band,
Ceramics International
,
[2] Solid state synthesis, sintering and dielectric properties of Li2MnSiO4 ceramics,
Journal of Materials Research and Technology
,
[3] Amelioration of sintering and multi-frequency dielectric properties of Mg3B2O6: A mechanism study of nickel substitution using DFT calculation,
Journal of Advanced Ceramics
,
[4] High sintering and dielectric performance: The improved (Mg, Zn)3B2O6 ceramics with the help of the DFT calculation,
Journal of Magnesium and Alloys
,
[5] 5G array antenna substrate for electromagnetic beam splitting via cobalt-substituted zinc molybdate low temperature co-fired ceramics,
Journal of the European Ceramic Society
,
[6] All-dielectric terahertz metasurface for linear-polarized multichannel transmission and superposition states of spherical and vortex waves,
Photonics Research
,
[7] Low temperature coefficient of resistance and high conductivity: Enhanced Cu–substituted LaCo0.4Ni0.6O3 ceramics for functional material,
Ceramics International
,
[8] Constructing a Multifunctional Interlayer toward Ultra-High Critical Current Density for Garnet-Based Solid-State Lithium Batteries,
Advanced Functional Materials
,
[9] Polarization-dependent multichannel transmission of 5G signals based on Zn0.91(Li0.5Bi0.5)0.09MoO4 low-temperature co-fired ceramics,
Journal of the European Ceramic Society
,
[10] ll-ceramic array patch for 5G signal enhancement based on B-site substituted zinc-cobalt molybdate low temperature co-fired ceramics,
Chemical Engineering Journal
,
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