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薛昊

姓名:薛昊

职称:副教授

电话:

传真:

邮箱:xuehao@xmu.edu.cn

个人简历

工作经历:      

 2009.08-至今    365游戏官方网站   副教授

 2006.12-2009.07 365游戏官方网站   助理教授

 2012.08-2013.08 美国匹兹堡大学       访问学者

 2018.09-2019.09 美国佐治亚理工学院      访问学者


教育经历:      

2001.08-2006.07 清华大学,材料科学与工程系 博士

1997.08-2001.07 清华大学,材料科学与工程系 学士


研究领域

1.功能陶瓷与器件:压电材料与器件,高热导陶瓷材料及其金属化,电子封装陶瓷,微波介质,MLCC介质粉体。

2.能源材料与器件:基于压电、热释电和摩擦电效应的能量收集器件、自供电微纳器件和柔性可穿戴器件。

主要科研成果

薛昊副教授目前研究领域为压电材料与器件,摩擦纳米发电机和自供电器件,柔性可穿戴电子学,高导热氮化铝陶瓷及其金属化,电子封装材料,微波介质陶瓷等,在Nature Communications, Nano Energy, Journal of Materials Chemistry A 等期刊发表论文50余篇。

主要代表学术论著与论文

[1]Y. Chen, Z. Deng, R. Ouyang, R. Zheng, Z. Jiang, H. Bai*, H. Xue*, 3D printed stretchable smart fibers and textiles for self-powered e-skin, Nano Energy. 84 (2021) 105866.

[2]H. Zou#, L. Guo#, H. Xue#(共一作者), Y. Zhang, X. Shen, X. Liu, P. Wang, X. He, G. Dai, P. Jiang, H. Zheng, B. Zhang, C. Xu, Z.L. Wang*, Quantifying and understanding the triboelectric series of inorganic non-metallic materials, Nat Commun. 11 (2020) 2093.

[3]J. Wu, W. Wang, Y. Tian, C. Song, H. Qiu, H. Xue*, Piezotronic effect boosted photocatalytic performance of heterostructured BaTiO3/TiO2 nanofibers for degradation of organic pollutants, Nano Energy. 77 (2020) 105122.

[4]L. Zhang, Y. Tian, C. Song, H. Qiu, H. Xue*, Study on preparation and performance of flexible all-solid-state supercapacitor based on nitrogen-doped reduced graphene oxide/multi-walled carbon nanotubes/manganese dioxide, Journal of Alloys and Compounds. (2020) 157816.

[5] L. Ouyang, W. Wang, H. Fan, Z. Weng, W. Wang, H. Xue*, Sintering behavior and microwave performance of CaSiO3 ceramics doped with BaCu(B2O5) for LTCC applications, Ceramics International 45(15) (2019) 18937-18942.

[6] W. Luo, L. Zhang, W. Wang, L. Ouyang, H. Xue*, Polyaniline‐Modified Hierarchical Graphene Fiber for Ultrahigh‐Performance Electrochemical Supercapacitor with Carbon Fiber in Core as Current Collector, Energy Technology 7(11) (2019) 1900522.

[7] Z. Weng, C. Song, Z. Xiong, H. Xue*, W. Sun, Y. Zhang, B. Yang*, M.J. Reece, H. Yan, Microstructure and broadband dielectric properties of Zn2SiO4 ceramics with nano-sized TiO2 addition, Ceramics International 45(10) (2019) 13251-13256.

[8] Z. Weng, Z. Han, F. Xiao, H. Xue*, D. Peng*, Low temperature sintering and microwave dielectric properties of Zn1.8 SiO3.8 ceramics with BaCu(B2O5) additive for LTCC applications, Ceramics International 44(12) (2018) 14145-14150.

[9] H. Xue*, Q. Yang, D. Wang, W. Luo, W. Wang, M. Lin, D. Liang, Q. Luo, A wearable pyroelectric nanogenerator and self-powered breathing sensor, Nano Energy 38 (2017) 147-154.

[10] Q. Yang, D. Wang, M. Zhang, T. Gao, H. Xue*, Z. Wang, Z. Xiong, Lead-free (Na0.83K0.17)0.5Bi0.5TiO3 nanofibers for wearable piezoelectric nanogenerators, Journal of Alloys and Compounds 688 (2016) 1066-1071.

[11] T. Gao, J. Liao, J. Wang, Y. Qiu, Q. Yang, M. Zhang, Y. Zhao, L. Qin, H. Xue*, Z. Xiong, L. Chen, Q.-m. Wang, Highly oriented BaTiO3 film self-assembled using an interfacial strategy and its application as a flexible piezoelectric generator for wind energy harvesting, Journal of Materials Chemistry A 3(18) (2015) 9965-9971.

[12] M. Zhang, T. Gao, J. Wang, J. Liao, Y. Qiu, H. Xue*, Z. Shi, Z. Xiong, L. Chen, Single BaTiO3 nanowires-polymer fiber based nanogenerator, Nano Energy 11 (2015) 510-517.

[13] M. Zhang, T. Gao, J. Wang, J. Liao, Y. Qiu, Q. Yang, H. Xue*, Z. Shi, Y. Zhao, Z. Xiong, L. Chen, A hybrid fibers based wearable fabric piezoelectric nanogenerator for energy harvesting application, Nano Energy 13 (2015) 298-305.


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