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闫静

来源:必威BETWAY 时间:2022-04-12 点击数:


闫静,女,副教授,中共党员,工学博士,山东大学重点资助类博士后;曾获第五届中国青少年科技创新奖、山东高校优秀科研成果奖(贰等奖 )等国家级和省级奖项;主持山东省自然科学基金面上项目1项;获选2019年度山东省政府公派出国留学项目;发表SCI收录论文20余篇,其中第一作者文章12篇;授权国家发明专利9项,其中独立发明人3项;参与编写英文专著1部。主讲《大学物理》、《光学》等课程。

研究方向为智能/功能无铅环保陶瓷薄膜材料及其纳米结构,包括铁电/压电材料,介电材料,多铁性材料等,特别是应用于微电子、微电子机械系统以及微型储能器件领域的薄膜陶瓷材料。

以第一作者发表的SCI论文:

  1. Jing Yan, et al., Bismuth layer-structured Bi4Ti3O12-CaBi4Ti4O15 intergrowth ferroelectric films for high-performance dielectric energy storage on Si substrate, Applied Surface Science, 2023, 636 :157851(1-8).

  2. Jing Yan, et al., Highly (00l)-textured BiFeO3 thick films integrated on stainless steel foils with an optimized piezoelectric performance. Journal of the European Ceramic Society. 2022, 3454-3462.

  3. Jing Yan, et al., Boosting energy storage performance of low-temperature sputtered CaBi2Nb2O9 thin film capacitors via rapid thermal annealing. Journal of Advanced Ceramic, 2021,10:627-735.

  4. Jing Yan, et al., Low temperature deposition of BiFeO3 films on Ti foils for piezoelectric applications, Scripta Materialia, 2021,204: 114152 (1-5).

  5. Jing Yan, et al., Leakage mechanisms of partially self-polarized BiFeO3 film. Ceramics International, 2018, 44(12): 13765-13772.

  6. Jing Yan, et al., Low thermal budget lead zirconate titanate thick films integrated on Si for piezo-MEMS applications. Microelectronic Engineering, 2020, 219: 111145.

  7. Jing Yan, et al., Tuning dielectric properties of sputtered BaTiO3 thin film capacitors via multilayering with SrTiO3. Functional Materials Letters, 2023, 16: 2340012 (1-5).

  8. Jing Yan, et al., Effects of aging on fatigue properties in imprinted BiFeO3 film. Journal of Materials Science: Materials in Electronics, 2017, 28(14):10400-10405.

  9. Jing Yan, et al., Ferro- and piezoelectric properties of intergrowth Bi4Ti3O12–BaBi4Ti4O15 thin film. Journal of Materials Science: Materials in Electronics, 2017,28,18879-1882.

  10. Jing Yan, et al., Enhanced ferro-and piezoelectric properties of Bi4Ti3O12-CaBi4Ti4O15 thin film on Pt(111)/Ti/SiO2/Si substrate. Materials Research Express, 2018, 5(5):056306.

  11. Jing Yan, et al., Enhanced ferroelectric properties of predominantly (100)-oriented CaBi4Ti4O15 thin films on Pt/Ti/SiO2/Si substrates, Journal of Applied Physics. 2008, 103: 056109 (1-3).

  12. Jing Yan, et al., Ferroelectric properties, morphologies and leakage currents of Bi0.97La0.03FeO3 thin films deposited on indium tin oxides/glass substrates, Journal of Applied Physics. 2008, 104: 076103(1-3). (Communication


 

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