西北工业大学

马晓

发布日期:2024-04-06 浏览次数:

个人经历 personal experience 工作经历 教育经历 2019年4月-2022年9月  西北工业大学  材料学院  助理研究员2022年9月 至今             西北工业大学  材料学院  副研究员 2011年9月-2019年3月  西北工业大学  材料学院   材料加工工程    博士2007年9月-2011年7月  西北工业大学  材料学院  材料科学与工程  学士

教育教学

教育教学 Education and teaching 教育教学 1、本科生课程结构表征(英)            本科生专业核心课程 2019-2024现代分析测试方法    本科生专业核心课程 2020-2024现代分析测试方法(英)     本科生专业核心课程 2020-2024晶体学与晶体结构    本科生学科专业课程 2020-20242、研究生课程材料的现代研究方法 研究生专业课程 2022-2024

荣誉获奖

科学研究 Scientific Research 主要从事金属结构材料、功能材料的结构相变研究以及透射电子显微分析和原位电子显微分析。目前主持国家自然科学基金青年科学基金项目1项,陕西省基础科学研究计划1项,中央高校基本科研业务费项目1项。参与国家重点研发计划,国家自然科学基金区域创新项目、面上项目等多项课题。

科学研究

荣誉获奖 Awards Information 2020年获中国博士后创新人才支持计划资助。

学术成果

学术成果 Academic Achievements (1)     Chengyu Wang, Maosen Fu*, Yiheng Wang, Xiao Ma*, Xin Lin. Synergetic regulation of hierarchical microstructure to improve the 704 °C tensile property in laser directed energy deposition IN718Plus superalloy. Journal of Alloys and Compounds. 2023, 962: 171071. (2)     Xiao Ma, Xiping Guo *, Maosen Fu, Eutectoid decomposition of βNb5Si3 → αNb5Si3 + Nbss in Nbss/Nb5Si3 in-situ composites revealed by electron microscopy. Materials Characterization. 2022, 191: 112098. (3)     Mao-Sen Fu*, Xiao Ma*, Kang-Ning Zhao, Xiao Li, Dong Su*. High-entropy materials for energy-related applications. ISCIENCE. 2021, 102177: 1-25.(4)     Xiao Ma, Xi-Ping Guo*, Mao-Sen Fu, Yan-Qiang Qiao. Direct atomic-scale visualization of growth and dissolution of γNb5Si3in a Nb-Ti-Si based alloy via in-situ transmission electron microscopy. Scripta Materialia. 2019, 164: 86-90. (5)     Xiao Ma, Xi-Ping Guo*, Mao-Sen Fu. HRTEM observation of silicides and Laves phase precipitates in Nb-Ti-Si based alloys. International Journal of Refractory Metals and Hard Materials. 2019, 78: 138-145.(6)     Xiao Ma, Xi-Ping Guo*, Mao-Sen Fu, Yan-Qiang Qiao. In-situ TEM observation of hcp-Ti to fcc-Ti phase transformation in Nb-Ti-Si based alloys. Materials Characterization. 2018, 142: 332-339.(7)     Xiao Ma, Xi-Ping Guo*, Mao-Sen Fu. Precipitation of γNb5Si3 in Nb-Si based ultrahigh temperature alloys. Intermetallics. 2018, 98: 11-17. (8)     Xiao Ma, Xi-Ping Guo*, Mao-Sen Fu, Hai-Sheng Guo. Crystallographic characteristics of an integrally directionally solidified Nb-Ti-Si based in-situ composite. Scripta Materialia. 2017, 139: 108-113.(9)     Dou Li, Xiao-Lei Shi, Zhenyu Feng, Meng Li, Jiaxi Zhu, Xiao Ma, Lili Zhang, Hong Zhong, Wei-Di Liu, Shuangming Li,* Zhi-Gang Chen*. Fast Fabrication of High-Performance CoSb3-Based Thermoelectric Skutterudites via One-Step Yb-Promoted Peritectic Solidification. Advanced Functional Materials. 2023, 2305269.(10)  Y.Y. Liu, M.S. Fu*, X. Ma, J.M. He, L. Ni, Microstructure and microwave dielectric properties of nonstoichiometric 1:1 ordered Nd(Zn1/2Ti1/2+x)O3+2x perovskite ceramics with Ti4+ self-doping. Ceramics International. 2023, (11)  Yang-Yang Liu, Maosen Fu*, Hanju, Guo, Xiao Ma, Lei Ni. Structure and microwave dielectric properties of 1:1 ordered Nd [(Mg1-xZnx)1/2Ti1/2]O3 complex perovskite ceramics. Ceramics International. 2022, 48: 23044-23050.(12)  Maosen Fu*, Yang-Yang Liu, Liang Xu, Shu-Jing Jia, Xiao Ma, Hai-Jun Su, Xin-Lei Zhang, Lei Ni. Fabrication and microstructure of preferential orientated 1:1 ordered Ba(Mg1/3Nb2/3)O3 complex perovskite microwave dielectric ceramics bylaser floating zone technique. Ceramics International. 2021, 47: 25458–25466. (13)  Chen-Dong Zhao, Jin-Shan Li*, Yu-Dong Liu, Xiao Ma, Yu-Jie Jin, William Yi Wang*, Hong-Chao Kou, Jun Wang*. Optimizing mechanical and magnetic properties of AlCoCrFeNi high-entropy alloy via FCC to BCC phase transformation. Journal of Materials Science and Technology. 2021, 86: 117-126.(14)  Xinlei Zhang, D. Zhao, X. Liu, R. Bai, X. Ma, M. Fu, B. Bin Zhang, G. Zha. Ferroelastic Domains Enhanced the Photoelectric Response in a CsPbBr3 Single-Crystal Film Detector. Journal of Physics Chemistry Letter. 2021, 12: 8685–8691.(15)  Xinlei Zhang, Binbin Zhang, Xiao Ma, Maosen Fu, Gangqiang Zha, Wanqi Jie. Orientational Dependence of Electron Beam Irradiation Damage in Lead-Free Halide Double Perovskite Cs2AgBiBr6, Journal of Physics Chemistry C. 2021, 125: 13033-13040.(16)  Jinming Liu, Wei Zhai*, Baojian Wang, Xiao Ma, Pengxu Yan, Bingbo Wei. Structure and property modulation of primary CoSn and peritectic CoSn2 intermetallic compounds through ultrasonicating liquid Sn–10%Co alloy, Journal of Alloys and Compounds. 2020, 827: 154297. (17)  Rui-Da Shi, Xiao Ma, Pian-Pian Ma, Xiao-Li Zhu*, Mao-Sen Fu*, Xiang-Ming Chen*. Ba‐based complex perovskite ceramics with superior energy storage characteristics. Journal of the American Ceramic Society. 2020, 103: 6389-6399.(18)  Maosen Fu, Zhenpeng Yao, Xiao Ma, Hui Dong, Ke Sun, Sooyeon Hwang, Enyuan Hu, Hong Gan, Yan Yao, Eric A. Stach, Chris Wolverton, Dong Su*. Expanded Lithiation of Titanium Disulfide: Reaction Kinetics of Multi-Step Conversion Reaction. Nano Energy. 2019, 103882. (19)  Juanjuan Lu, Xiaoqiang Liu, Xiao Ma, Maosen Fu, An Yuan, Yongjun Wu, Xiangming Chen, Crystal structures, dielectric properties, and phase transition in hybrid improper ferroelectric Sr3Sn2O7-based ceramics Crystal structures, dielectric properties, and phase transition in hybrid improper ferroelectric Sr3Sn2O7-based ceramics, Journal of Appllied Physics. 2019, 125: 044101.(20)  Mao-Sen Fu*, Ya-Ruan Yuan, Xiao Ma, Xin Lin. A study of α variant selection in laser solid forming Ti-6Al-4V. Journal of Alloys and Compounds. 2019, 792: 1261–1266.(21)  Wenbin Feng, Xiaoli Zhu, Xiaoqiang Liu, Maosen Fu, Xiao Ma, Shujing Jia, Xiangming Chen. Relaxor nature in Ba5RZr3Nb7O30 (R = La, Nd, Sm) tetragonal tungsten bronze new system. Journal of the American Ceramic Society. 2018, 101: 1623–1631. (22)  Kun Li, Xiaoli Zhu, XiaoQiang Liu, Xiao Ma, Maosen Fu, Xiangming Chen. Electric-field-induced phase transition and pinched P-E hysteresis loops in Pb-free ferroelectrics with a tungsten bronze structure. NPG Asia Materials. 2018, 10: 71–81.

综合介绍

团队信息 Team Information 西北工业大学材料学院科教实践与材料分析创新中心由陕西省材料分析研究中心、材料国家级实验教学示范中心、研究生创新实验中心与筹建中的西北工业大学“十三五”某关键材料条件建设项目科研平台(超高温结构复合材料重点实验室承建部分)合并而来。中心现已建成显微结构分析(29台套)、理化分析(42台套)、性能分析(46台套)、制备与制样系统(36台套)四大平台,拥有场发射透射电子显微镜、双束电镜、场发射扫描电子显微镜、X射线显微镜、综合物性分析系统、热等静压、热模拟压缩机等先进的材料制备-结构表征-性能分析系统。

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