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熊 娟

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姓名:熊娟         职称:副教授

EMAIL: juanxiong@hubu.edu.cn

办公地址:微电子学院9楼

通讯地址:武汉市武昌区友谊大道368号湖北大学微电子学院

研究方向:

低维功能材料与柔性电子器件

教育背景:

19959月-19996  武汉科技大学材料学学士

20019月-20046  武汉科技大学材料学硕士

20069月-200912月  湖北大学材料学博士

工作履历:

2004年-2017  湖北大学物电学院 实验技术人员

2018至今  湖北大学物电学院 副教授

20126月-20129  捷克俄斯特拉法技术大学冶金与材料工程学院,访问学者

20164月-201610月 澳大利亚伍伦贡大学超导与电子材料研究所,访问学者

学术兼职:

Chemical Engineering JournalACS Applied Materials & InterfacesInternational Journal of Hydrogen EnergyCeramics InternationalJournal of Alloys and CompoundsApplied Surface Science、《中国科学》等期刊审稿人。

奖励与荣誉:

2022年贵州省自然科学三等奖

2023中国大学生工程实践与创新能力大赛金奖指导老师、湖北省优秀硕士论文及湖北省优秀学士论文指导老师。

学术成果、科研项目:

主持、参与多项国家、省部级科研项目。在Advanced ScienceAdvanced Energy Materials等期刊发表SCI论文30余篇,相关技术已获授权发明专利6项。


主持的科研项目

1. 2022/06-至今 液态金属与有机小分子协同增强自驱动柔性压电传感器力电性能机制研究,湖北省自然科学基金项目,在研

2. 2022/10-2024/12 基于压电式传感器的智能加密键盘安防系统开发, 横向课题,在研

3. 2022/10-2024/10 基于自驱动柔性压力传感器的智能健康监测系统设计与开发, 横向课题,在研

4. 2020/12-2021/12 废渣纳米吸附材料的结构性能分析,横向课题,结题

5. 2021/11-2022/12 智能曲面LED户外显示屏及无线数据交换控制系统开发,横向课题,结题

6. 2012/01-2014/12 金纳米多孔敏感增强型压电薄膜体声波生物传感器的研究,国家自然科学基金项目,结题

7. 2011/01-2012/12 MEMS工艺制备高灵敏度体声波生物传感,湖北省自然科学基金项目,结题


代表性成果

[1] Jingyan Liu, Shi Zeng, Mingrui Zhang, Juan Xiong*, Haoshuang Gu, Zhao Wang, Yongming Hu, Xianghui Zhang, Yi Du, Long Ren*. Giant piezoelectric output and stability enhancement in piezopolymer composites with liquid metal nanofillers. Advanced Science, 2023, 2304096.

[2] Shi Zeng, Mingrui Zhang, Lei Jiang, Zhao Wang, Haoshuang Gu, Juan Xiong*, Yi Du, Long Ren*. Wearable piezoelectric nanogenerators based on core-shell Ga-PZT@GaOx nanorod-enabled P(VDF-TrFE) composites. ACS Applied Materials Interfaces, 2022, 14:7990-8000.

[3] Xiangyu Ji, Jiayuan Zheng, Tianci Li, Lingyi Liu, Huili Wei, Chang Chen, Juan Xiong*; Xianbao Wang, Jinhua Li*, Feng Yan*. High-performance ambipolar field-effect transistors with a Ph-BTBT-10/PMMA/ZnO structure, Journal of Materials Chemistry C, 2023, 11: 12583-12589.

[4] Weihai. Zhang, Juan Xiong*, Li. Jiang, JianyingWang, Tao Mei, Xianbao Wang, Haoshuang Gu, Walid A. Daoud, Jinhua Li*. Thermal stability-enhanced and high-efficiency planar perovskite solar cells with interface passivation, ACS Applied Materials & Interfaces, 2017, 9: 38467-38476.

[5] Weihai Zhang, Juan Xiong*, Sheng Wang, Wei-er Liu, Jun Li, Haoshuang Gu, Jinhua Li*. Highly conductive and transparent silver grid/metal oxide hybrid electrodes for low-temperature planar perovskite solar cells. Journal of Power Sources, 2017, 337(1):118-124.

[6] Weihai Zhang, Juan Xiong*, Lei Liu, Xianghui Zhang, Haoshuang Gu*. Influence of annealing temperature on structural, optical and electrical properties of AZO/Pd/AZO films. Solar Energy and Materials Solar Cells, 2016, 153:52-60.

[7] Junjie Zou, Weier Liu, Wenqiu Deng, Gui Lei, Shi Zeng, Juan Xiong*, Haoshuang Gu, Zhenglong Hu, Xianbao Wang, Jinhua Li*. An efficient guanidinium isothiocyanate additive for improving the photovoltaic performances and thermal stability of perovskite solar cells. Electrochimica Acta, 2018, 291:297-303.

[8] Yabin Zhang, Chan Xu, Fangcheng Wan, Di Zhou, Liu Yang, Haoshuang Gu, Juan Xiong*. Synthesis of flower-like Bi2Sn2O7/Bi2WO6 hierarchical composites with enhanced visible light photocatalytic performance. Journal of Alloys and Compounds, 2019, 788:1154-1161.

[9] Lei Liu, Cui Luo, Juan Xiong*, Zhixian Yang, Yabin Zhang, Yaxuan Cai, Haoshuang Gu**. Reduced graphene oxide (rGO) decorated TiO2 microspheres for visible-light photocatalytic reduction of Cr(VI). Journal of Alloys and Compounds, 2017, 690:771-776.

[10] Weihai Zhang, Juan Xiong, Jinhua Li, Walid A Daoud*. Organic Dye passivation for high-performance all-inorganic CsPbI1.5Br1.5 perovskite solar cells with efficiency over 14%. Advanced Energy Materials, 2020, 2003585.

[11] Weihai Zhang, Juan Xiong, Jinhua Li, Walid A Daoud*. Mechanism of water effect on enhancing the photovoltaic performance of triple-cation hybrid perovskite solar cells. ACS Applied Materials & Interfaces, 2019, 11:12699-12708.

[12] Weihai Zhang, Juan Xiong, Jinhua Li, Walid A Daoud*. Guanidinium induced phase separated perovskite layer for efficient and highly stable solar cells. Journal Materials Chemistry A, 2019,7:9486-9496.


 

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