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翟思美
发布时间:2023-09-16   点击数:

名:翟思美

别:女

毕业时间:2015-06

毕业院系:咸阳师范学院-物理与电子工程学院

工作单位:陕西师范大学

职务职称:中级

主要经历:

2019.9-2023.6 (博士) 陕西师范大学  凝聚态物理专业

2018.7-2019.7  (工作)   陕西服装工程学院  教师

2015.9-2018.6 (硕士) 陕西师范大学  凝聚态物理专业

2011.9-2015.6  (学士)   咸阳师范学院  物理学专业

教科研成果(学术论文):

[1] Simei Zhai, Peng Liu, Shihao Wu. Novel ultra-low loss and low-fired

Li8MgxTi3O9+xF2 microwave dielectric ceramics for resonator antenna applications.

Journal of the European Ceramic Society, 2023, 43(8): 3331-3337. (第一作者, SCI 1 区, IF=6.364)

[2] Simei Zhai, Peng Liu, Shihao Wu. Low temperature sintered Li6MgTiNb1-xVxO8F microwave dielectric ceramics with high-quality factor. Journal of the European Ceramic Society, 2023, 43(1): 82-87. (第一作者, SCI 1 区, IF=6.364)

[3] Simei Zhai, Peng Liu, Shuaishuai Zhang. A novel high-Q oxyfluoride Li4Mg2NbO6F microwave dielectric ceramic with low sintering temperature. Journal of the European Ceramic Society, 2021, 41(8): 4478-4483. (第一作者, SCI 1 区,IF=6.364)

[4] Simei Zhai, Peng Liu. Microwave dielectric properties of rock-salt structured Li7(Nb1-xTix)2O8-xF (0 ≤ x ≤ 0.10) system with low sintering temperature. Ceramics

International, 2022, 48(19): 28268-28273. (第一作者, SCI 1 区, IF=5.532)

[5] Simei Zhai, Peng Liu, Shuaishuai Zhang. Temperature stable Li5.5Nb1.5O6F-based microwave dielectric ceramics for LTCC applications. Ceramics International, 2022, 48(11): 15951-15958. (第一作者, SCI 1 区, IF=5.532)

[6] Simei Zhai, Peng Liu, Guoguang Yao, Shuaishuai Zhang, Jingxiang You. Novel series of high-Q oxyfluoride microwave dielectric ceramics for LTCC applications.

Journal of Alloys and Compounds, 2022, 899: 163145. (第一作者, SCI 2 区,IF=6.371)

[7] Simei Zhai, Peng Liu, Liping Zhao, Zhifen Fu. Low-temperature sintering and

microwave dielectric properties of Li2Mg3ZrO6 ceramics derived from high-energy ball milling. Journal of Materials Science: Materials in Electronics, 2020, 31(5):

4253-4260. (第一作者, SCI 4 区, IF=2.779)

[8] Simei Zhai, Peng Liu, Dongdong Liu, Yaqi Chu, Zhiming Yang. Low‑fring Li4Mg3Ti2O9-CaTiO3 composite ceramics with temperature stable microwave dielectric properties. Journal of Materials Science: Materials in Electronics, 2019, 30(22): 20002-20009. (第一作者, SCI 4 区, IF=2.779)

主持课题
 陕西师范大学研究生自由探索项目, 面向 6G 的微波介质材料探索,2019.10-2022.5

荣誉成就:

2023.06荣获陕西师范大学博士研究生优秀学位论文;

2022.12荣获陕西师范大学HR奖学金;

2022.11荣获陕西师范大学积学一等奖学金;

2021.11荣获陕西师范大学积学一等奖学金;

2018.06荣获陕西师范大学研究生优秀毕业生;

2018.06荣获陕西师范大学研究生优秀毕业论文。


 

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