方频阳
 

基本信息

姓名: 方频阳                                                                                                   出生年月:19814

学历: 博士研究生                                                                                            学位: 博士

职称: 副教授                                                                                                   职务:无

学院材料与化工学院                                                                                     联系方式:fpy_2000@163.com

学习经历

2004年至2010年:西北工业大学  材料学院,博士

2000年至2004年:西北工业大学  材料学院,学士

工作经历

2010年至2015年:西安工业大学,讲师

2015年至今:西安工业大学,副教授

招生信息

每年招收硕士生1-2名。

教育教学

本科课程:《物理化学》,《工程材料学》,《陶瓷工艺原理》,《电子材料与器件》等

研究生课程:《特种陶瓷工艺学》

研究方向

高温压电材料的制备与表征;弛豫型铁电材料弛豫机制探索;铁电材料纳米粉体的湿化学法合成;压电材料微结构设计与电学性能调控。

学术兼职

受邀成为Journal of American Ceramics Society, Journal of Alloys and Compounds, Materials Research Bulletin, Materials Science and Engineering B等国际著名期刊审稿人。

科研项目

主持陕西省教育厅科研专项项目2项,西安工业大学校长基金项目1项,参与科研项目多项。

近年来主持/参与的科研项目:

1.铋层状材料的制备技术及电学性能研究(XAGDXJJ10112011.1-2012.12 主持

2.SrBi2Nb2O9基固溶体的缺陷和压电性能调控 11JK08342011.7-2013.8 主持

3.变价金属离子掺杂对SrBi2Nb2O9基固溶体电学性能的影响(14JK1332)2014.7-2015.12 主持

4.高效、宽带超结构和梯度复合透声材料研究(2013CB6329042013.1-2016.12 参与

学术成果

近五年来第一作者发表的学术论文列表:

[1]       P.Y. Fang, Z.Z. Xi, W. Long, X.J. Li, Shanchuan Chen, Structural and dielectric relaxor behavior of Ba1-xNdxBi4Ti4O15 ceramics. Solid State Communications. 231 (2016) 1-5

[2]       P.Y. Fang, Z.Z. Xi, W. Long, X.J. Li, Sol-gel derived (K0.16Na0.84)0.5Bi4.5Ti4O15 nanopowders and ceramics: Synthesis, characterization and electrical properties. Journal of Alloys and Compound. 657 (2016) 273-277

[3]       P.Y. Fang, P. Liu, Z.Z. Xi, Quantitative description of the phase transition of Aurivillius oxides Sm modified BaBi4Ti4O15. Physica B 468 (2015) 34-38

[4]       P.Y. Fang, Z.Z. Xi, W. Long, X.J. Li, S.J. Qiu, Synthesis and dielectric properties of the Aurivilliius oxide BaBi4Ti4O15 by the Pechini method. Journal of Sol-Gel Science and Technology. 71 (2014) 241-245

[5]       P.Y. Fang, P. Liu, Z.Z. Xi, W. Long, X.J. Li, Structure and electrical properties of New Aurivillius oxides (K0.16Na0.84)0.5Bi4.5Ti4O15 with manganese modification. Journal of Alloys and Compounds. 595 (2014) 148-152

[6]       P.Y. Fang, P. Liu, Z.Z. Xi, W. Long, X.J. Li, Effect of cerium additives on structure and electrical properties of Aurivillius oxides (K0.16Na0.84)0.5Bi4.5Ti4O15. Materials Science and Engineering B. 186 (2014) 21-25

[7]       P.Y. Fang, Z.Z. Xi, W. Long, X.J. Li, J. Li, Structure and electrical properties of SrBi2Nb2O9-based ferroelectric ceramics with lithium and cerium modification. Journal of Alloys and Compounds. 575 (2013) 61-64

[8]       P.Y. Fang, Z.Z. Xi, W. Long, X.J. Li, J. Li, Piezoelectric properties enhanced of Sr0.6(BiNa)0.2Bi2Nb2O9 ceramic by (LiCe) modification with charge neutrality. Materials Science and Engineering B. 178 (2013) 960-964

[9]       P.Y. Fang, Z.Z. Xi, W. Long, X.J. Li, Ferroelectric, dielectric and piezoelectric properties of Sr0.6(BiNa)0.2Bi2Nb2O9 ceramics. Materials Research Bulletin. 48 (2013) 4907-4910

[10]    P.Y. Fang, H.Q. Fan, Z.Z. Xi, W.X. Chen, S.C. Chen, W. Long, X.J. Li, Structure and electrical properties of bismuth and sodium modified SrBi2Nb2O9 ferroelectric ceramics. Journal of Alloys and Compounds. 550 (2013) 335-338

[11]    P.Y. Fang, H.Q. Fan, Z.Z. Xi, W.X. Chen, Studies of structural and electrical properties on four-layers Aurivillius phase BaBi4Ti4O15. Solid State Communications. 152 (2012) 979-983

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