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赵运超 博士生     进组时间: 2020.08.20    离组时间: 2023.06.23


教育经历

2010.9-2014.6 青岛大学,高分子材料与工程,学士

2014.9-2017.6 青岛大学,材料加工工程,硕士

2019.9-2023.6,广西大学-北京纳米能源所联合培养,博士


离组后去向

2023.7-  山东农业大学 副教授



在读期间发表论文

1. Yunchao Zhao, Shaobo Wang, Yiming Ding, Zeyu Zhang, Xingyi Wan, Tian Huang, Yalong Zhang, Zhong Lin Wang*, Linlin Li*Piezotronic Effect-Augmented Cu2-xO-BaTiO3 Sonosensitizers for Multifunctional Cancer Dynamic TherapyACS Nano,  2022, doi:10.1021/acsnano.2c01968

2. Yunchao Zhao, Tian Huang, Xiaodi Zhang, Yuanbo Cui, Lili Zhang, Linlin Li*, Zhong Lin Wang. Piezotronic and piezo-phototronic effects on Recent Progress on Sonodynamic Disease Therapy. BMEMat  2023, 1, e12006.

3. Yunchao Zhao#, Tian Huang#, Shaobo Wang, Shuncheng Yao, Quanhong Hu, Xingyi Wan, Ning Guo, Yang Zhang*, Linlin Li*. Manganese Oxide-Modified Bismuth Oxychloride Piezoelectric Nanoplatform with Multiple Enzyme-Like Activities for Cancer Sonodynamic Therapy. J. Colloid Interf. Sci. 2023, 640, 839-850.

4. Yunchao Zhao, Shaobo Wang, Shuncheng Yao, Xingyi Wan, Quanhong Hu, Minjia Zheng, Zhuo Wang, Linlin Li*Piezoelectric Ba0.85Sr0.15TiO3 nanosonosensitizer with nitric oxide delivery for boosting cancer therapy. Small Methods DOI: 10.1002/smtd.202301134 

5. Yiming Ding#, Yunchao Zhao#, Shuncheng Yao, Shaobo Wang, Xingyi Wan, Quanhong Hu, and Linlin Li*. Enhanced Sonodynamic Cancer Therapy through Iron-Doping and Oxygen-Vacancy Engineering of Piezoelectric Bismuth Tungstate Nanosheets. Small DOI: 10.1002/smll.202300327

6. 黄田#赵运超#李琳琳*,压电半导体纳米材料在声动力疗法中的应用进展,《无机材料学报》 


 毕业后合作论文

1. Qinyu Zhao#, Yunchao Zhao#, Songjing Zhong, Zhaoyang Yue, Zhuoheng Jiang, Shaobo Wang, Quanhong Hu, Shuncheng Yao, Kaikai Wen, Linlin Li*. Urchin-like Piezoelectric ZnSnO3/Cu3P p-n Heterojunction for Enhanced Cancer Sonodynamic Therapy. Chinese Chemical Letters  DOI: 10.1016/j.cclet.2024.109644.

2. Zhaoyang Yue, Qinyu Zhao, Shaobo Wang, Shuncheng Yao, Xingyi Wan, Quanhong Hu, Kaikai Wen, Yunchao Zhao,* Linlin Li*. Manganese dioxide coated piezoelectric nanosonosensitizer for cancer therapy with tumor microenvironment remodeling and multienzyme-like catalysis. Small Methods 2024, 2400018.