BETVLCTOR•伟德国际(中国)官网平台
BETVLCTOR伟德国际官网平台      
 

发布时间: 2021-01-24  浏览次数:

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毛兰群                


教授,博士生导师。理学博士(华东师范大学),博士后(日本东京工业大学)。200210月至20211月,在中国科学院化学研究所工作,任研究员,博士生导师;20211月起,在BETVLCTOR伟德国际官网平台工作。曾获国家杰出青年科学基金资助、入选国家“万人计划”科技创新领军人才、主持基金委创新群体等项目。以第一完成人身份,曾获国家自然科学二等奖 (2015年度)、北京市科学技术一等奖(2012年度)。现主持基金委重大项目,任ACS Sensors副主编。                   


通信地址:北京市新街口外大街19号, BETVLCTOR伟德国际官网平台


邮编:100875                


电子邮箱:lqmao@bnu.edu.cn                  


研究兴趣

  电化学及电分析化学

  脑化学检测及调控

    招生信息

      每年招收博士生2-4名,硕士生2-4名;长期诚招博士后若干名。

      博士后申请者具有化学、神经生物学等专业的博士学位。具有电化学、电分析化学、神经科学研究背景者,

     优先考虑。

    代表性论文

    1. Zhu, F.; Xue, Y.; Ji, W.; Li, X.; Ma, W.; Yu, P.; Jiang, Y.; Mao, L. Galvanic Redox Potentiometry for Fouling-Free and Stable Serotonin Sensing in a Living Animal Brain. Angew. Chem. Int. Ed. 2023, 62, e202212458.

    2.  Zhou, Y.; Xiong, T.; Lu, J.; Yu, P.; Jiang, Y.; Xia, F.; Mao, L. Highly-Efficient Ion Gating through Self-Assembled Two-Dimensional Photothermal Metal-Organic Framework Membrane. Angew. Chem. Int. Ed. 2023, 62, e202302997.

    3.  Xiong, T.; Li, C.; He, X.; Xie, B.; Zong, J.; Jiang, Y.; Ma, W.; Wu, F.; Fei, J.; Yu, P.; Mao, L. Neuromorphic functions with a polyelectrolyte-confined fluidic memristor. Science 2023, 379, 156-161.

    4.  Wu, F.; Yu, P.; Mao, L. Multi-Spatiotemporal Probing of Neurochemical Events by Advanced Electrochemical Sensing Methods. Angew. Chem. Int. Ed. 2022, e202208872.

    5.  Yang, X.; Wu, W.; Chen, X.; Wu, F.; Fan, S.; Yu, P.; Mao, L. A Versatile Artificial Metalloenzyme Scaffold Enabling Direct Bioelectrocatalysis in Solution, Sci. Adv. 2022, eabo3315.

    6.  Yue, Q.; Wang, K.; Guan, M.; Zhao, Z.; Li, X.; Yu, P.; Mao, L. Single-Vesicle Electrochemistry Reveals Sex Difference in Vesicular Storage and Release of Catecholamine. Angew. Chem. Int. Ed. 2022, 61, e202117596.

    7.  Pan, C.; Wu, F.; Mao, J.; Wu, W.; Zhao, G.; Ji, W.; Ma, W.; Yu, P.; Mao, L. Highly Stable and Selective Sensing of Hydrogen Sulfide in Living Mouse Brain with NiN4 Single-Atom Catalyst-Based Galvanic Redox Potentiometry. J. Am. Chem. Soc. 2022, 144, 14678-14686.

    8.  Li, X.; Jin, Y.; Zhu, F.; Liu, R.; Jiang, Y.; Jiang, Y.; Mao, L. Electrochemical Conjugation of Aptamers on a Carbon Fiber Microelectrode Enables Highly Stable and Selective In Vivo Neurosensing. Angew. Chem. Int. Ed. 2022, 61, e202208121.

    9.  Li, W.; Jin, J.; Xiong, T.; Yu, P.; Mao, L. Fast-Scanning Potential-Gated Organic Electrochemical Transistors for Highly Sensitive Sensing of Dopamine in Living Rat Brain. Angew. Chem. Int. Ed. 2022, 61, e202204134.

    10.  Jin, J.; Mao, J.; Wu, W.; Jiang, Y.; Ma, W.; Yu, P.; Mao, L. Highly Efficient Electrosynthesis of Nitric Oxide for Biomedical Applications. Angew. Chem. Int. Ed. 2022, 61, e202210980.

    11.  Xue, Y.; Ji, W.; Jiang, Y.; Yu, P.; Mao, L. Deep Learning for Voltammetric Sensing in a Living Animal Brain. Angew. Chem. Int. Ed. 2021, 60, 23777-23783.

    12.  Zhou, M.; Jiang, Y.; Wang, G.; Wu, W.; Chen, W.; Yu, P.; Lin, Y.; Mao, J.; Mao, L. Single-atom Ni-N-4 provides a robust cellular NO sensor. Nat. Commun. 2020, 11, 3188.

    13.  Yue, Q.; Li, X.; Wu, F.; Ji, W.; Zhang, Y.; Yu, P.; Zhang, M.; Ma, W.; Wang, M.; Mao, L. Unveiling the Role of DJ-1 Protein in Vesicular Storage and Release of Catecholamine with Nano/Micro-Tip Electrodes. Angew. Chem.Int. Ed. 2020, 59, 11061-11065.

    14.  Yu, P.; Wei, H.; Zhong, P.; Xue, Y.; Wu, F.; Liu, Y.; Fei, J.; Mao, L. Single-Carbon-Fiber-Powered Microsensor for In Vivo Neurochemical Sensing with High Neuronal Compatibility. Angew. Chem. Int. Ed. 2020, 59, 22652-22658.

    15.  Wu, F.; Pan, C.; He, C.; Han, Y.; Ma, W.; Wei, H.; Ji, W.; Chen, W.; Mao, J.; Yu, P.; Wang, D.; Mao, L.; Li, Y. Single-Atom Co-N4 Electrocatalyst Enabling Four-Electron Oxygen Reduction with Enhanced Hydrogen Peroxide Tolerance for Selective Sensing. J. Am. Chem. Soc. 2020, 142, 16861-16867.

    16.  Jin, J.; Ji, W.; Li, L.; Zhao, G.; Wu, W.; Wei, H.; Ma, F.; Jiang, Y.; Mao, L. Electrochemically Probing Dynamics of Ascorbate during Cytotoxic Edema in Living Rat Brain. J. Am. Chem. Soc. 2020, 142, 19012-19016.6

    17.  Guo, S.; Yu, P.; Li, W.; Yi, Y.; Wu, F.; Mao, L. Electron Hopping by Interfacing Semiconducting Graphdiyne Nanosheets and Redox Molecules for Selective Electrocatalysis. J. Am. Chem. Soc. 2020, 142, 2074-2082.

    18.  Jiang, Y.; Ma, W.; Qiao, Y.; Xue, Y.; Lu, J.; Gao, J.; Liu, N.; Wu, F.; Yu, P.; Jiang, L.; Mao, L. Metal-Organic Framework Membrane Nanopores as Biomimetic Photoresponsive Ion Channels and Photodriven Ion Pumps. Angew. Chem. Int. Ed. 2020, 59, 12795-12799.

    19.  Yang, X.; Tang, Q.; Jiang, Y.; Zhang, M.; Wang, M.; Mao, L. Nanoscale ATP-Responsive Zeolitic Imidazole Framework-90 as a General Platform for Cytosolic Protein Delivery and Genome Editing. J. Am. Chem. Soc. 2019, 141, 3782-3786.

    20.  Xiao, T.; Wang, Y.; Wei, H.; Yu, P.; Jiang, Y.; Mao, L. Electrochemical Monitoring of Propagative Fluctuation of Ascorbate in the Live Rat Brain during Spreading Depolarization. Angew. Chem. Int. Ed2019, 58, 6616-6619.



     
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