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刘伟佳 2022级博士研究生    

教育经历:

2022年-至今,北京理工大学,集成电路与电子学院,博士研究生

2019年-2022年,北京科技大学,数理学院,硕士研究生


奖励与荣誉:



代表性论著:

1. Neuroprosthetic contact lens enabled sensorimotor system for point-of-care monitoring and feedback of intraocular pressure, Weijia Liu, Zhijian Du, Zhongyi Duan, La Li,* and Guozhen Shen,* Nature Communications, 2024, 15, 5635.

2. Eye-wearable Ti3C2Tx MXene based microsupercapacitor for intraocular pressure application, Weijia Liu, Zhijian Du, Zhongyi Duan, Haiqing Liu, La Li,* Kai Jiang,* Di Chen, and Guozhen Shen,*, Journal of Materials Chemistry A, 2024, in press.

3. Ti3C2Tx MXene cathodes with redox-active electrolyte based flexible Zn-ion microsupercapacitor for integrated pressure sensing application, Weijia LiuLa Li,* and Guozhen Shen,* Nanoscale, 2023, 15, 2624.

4. Capacitance-enhanced microsupercapacitor with redox electrolyte additive for all-MXene-based flexible self-powered integrated photodetecting system, Weijia Liu, Chuqiao Hu, La Li,* and Guozhen Shen,*  ACS Applied Energy Materials2023, 6, 7387

5. Intercalation of small organic molecules into Ti3C2Tx MXene cathodes for flexible high-volume-capacitance Zn-ion microsupercapacitor, Weijia Liu, La Li, Chuqiao Hu, Di Chen,* and Guozhen Shen,Advanced Materials Technologies, 2022, 7, 2200158.

6. In-situ annealed Ti3C2Tx MXene based all-solid-state flexible Zn-ion hybrid micro supercapacitor array with enhanced stability, La Li, Weijia Liu, Kai Jiang, Di Chen,* and Guozhen Shen,* Nano-Micro Letters, 2021, 13, 100.

7. Chitosan-assisted fabrication of network C@V2O5 cathode for high-performance Zn-ion battery, Chunxue Liu, Rui Li, Weijia Liu, Guozhen Shen,* and Di Chen,* ACS Applied Materials & Interfaces, 2021, 13, 37194-37200