个人简介
易越, 男,1992年生,河南平顶山人。2013年本科毕业于东北大学生物医学工程专业, 2019年获北京航空航天大学生物医学工程博士学位;2021年在北京航空航天大学生物医学工程高精尖中心完成博士后研究;2021年7月,加入北京理工大学生命学院,任助理教授/硕士生导师。
研究领域
利用微生物学、生物电化学、分子生物学、纳米材料、分子印迹技术、微流控技术等开展生物诊疗研究,已开展的研究方向包括①基于分子印迹电化学的疾病早期诊断技术、②基于电化学活性微生物的急性毒性快速检测技术、③基于全细胞电化学的疾病标志物快速检测技术等
近期论文
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Yue Yi, Ting Zhao, Beizhen Xie, Yuxuan Zang, Hong Liu*. Dual detection of biochemical oxygen demand and nitrate in water based on bidirectional Shewanella loihica electron transfer[J]. Bioresource Technology, 2020, 309: 123402.
Yue Yi, Beizhen Xie*, Ting Zhao, Hong Liu. Comparative analysis of microbial fuel cell based biosensors developed with a mixed culture and Shewanella loihica PV-4 and underlying biological mechanism [J]. Bioresource Technology, 2018, 265: 415-421.
Yue Yi, Beizhen Xie*, Ting Zhao, Zhaoming Li, Devard Stom, Hong Liu. Effect of external resistance on the sensitivity of microbial fuel cell biosensor for detection of different types of pollutants [J]. Bioelectrochemistry, 2019, 125: 71-78.
Yue Yi, Beizhen Xie, Ting Zhao, Ziniu Qian, Hong Liu*. Effect of control mode on the sensitivity of a microbial fuel cell biosensor with Shewanella loihica PV-4 and the underlying bioelectrochemical mechanism [J]. Bioelectrochemistry, 2019, 128: 109-117.
Yue Yi, Beizhen Xie, Ting Zhao, Ziniu Qian, Hong Liu*. The effect of anode hydrodynamics on the sensitivity of microbial fuel cell based biosensors and the biological mechanism[J]. Bioelectrochemistry, 2020, 132: 107351.
Yue Yi, Ting Zhao, Yuxuan Zang, Beizhen Xie*, Hong Liu. Different mechanisms for riboflavin to improve the outward and inward extracellular electron transfer of Shewanella loihica[J]. Electrochemistry Communications. 2021, 124: 106966.
Yuxuan Zang, Ting Zhao, Beizhen Xie, Yong Feng, Yue Yi*, Hong Liu*. A bio-electrochemical sensor based on suspended Shewanella oneidensis MR-1 for the sensitive assessment of water biotoxicity[J]. Sensors and Actuators: B. Chemical. 2021, 341: 130004.
Beizhen Xie1, Bojie Liu1, Yue Yi1, Lige Yang, Dawei Liang, Ying Zhu, Hong Liu*. Microbiological mecha---nism of the improved nitrogen and phosphorus removal by embedding microbial fuel cell in Anaerobic–Anoxic–Oxic wastewater treatment process [J]. Bioresource Technology, 2016, 207: 109-117.