时晓玥

个人信息Personal Information

实验师

性别:女

毕业院校:中国科学院大学

学历:博士研究生毕业

学位:博士

在职信息:在职

所在单位:资产与实验室管理部-公共技术平台

入职时间:2024-08-30

电子邮箱:shi_xy@email.sdu.edu.cn

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个人简介Personal Profile

姓名:时晓玥

职称:实验师

单位:资产与实验室管理部-公共技术平台

邮箱shi_xy@email.sdu.edu.cn

【主要研究论文】

[1] Z. Zhang#, Y. Zhu#, X. Shi#, B. Qi, Y. Ding, Y. Du, W. Shi, J. Zhang, J. Liu, Y. Sang, Z. Wang, L. Zhang, H. Yu, H. Zhang, B. Cai, M. Zhao and Y. Li, OrbitalMorphologyBased Oxygen Reduction in a Correlated Oxide, Adv. Funct. Mater. 2024. (Co-first Authors)

[2] X. Kong#, X. Shi#, F. Min, Z. Ma, J. Zhan and B. Cai, Directionally Exfoliated Ni/Co Hydroxide-Organic Framework Nanosheets for Enhanced Wearable Glucose Sensing, Langmuir 2024. (Co-first Authors)

[3] X. Shi, Y. Ling, Y. Li, G. Li, J. Li, L. Wang, F. Min, R. Hübner, S. Yuan, J. Zhan and B. Cai, Complete Glucose Electrooxidation Enabled by Coordinatively Unsaturated Copper Sites in Metal–Organic Frameworks, Angew. Chem. Int. Ed. 2023. (Selected as VIP paper)

[4] X. Shi, J. Li, Y. Xiong, Z. Liu, J. Zhan and B. Cai, Rh single-atom nanozymes for efficient ascorbic acid oxidation and detection, Nanoscale 2023.

[5] X. Shi, Z. Jiang, X. Sun, J. Zhou, J. Lu, C. Yang, H.-P. Liang and S. Chen, Constructing electron-regulating structure to stabilize ruthenium sites for efficient acidic water oxidation, Mater. Today Energy 2023.

[6] L. Cao#, X. Shi#, Y. Li, X. Wang, L. Zheng and H.-P. Liang, Isolation anchoring strategy for in situ synthesis of iron single-atom catalysts towards long-term rechargeable zinc-air battery, Carbon 2022. (Co-first Authors)

[7] X. Shi, H. Zhu, J. Du, L. Cao, X. Wang and H.-P. Liang, Directed assembly of ultrasmall nitrogen coordinated Ir nanoparticles for enhanced electrocatalysis, Electrochim. Acta 2021.

[8] X. Shi, J. Du, T. G. J. Jones, X. Wang and H.-P. Liang, Understanding the Mechanism for Capacity Decay of V6O13-Based Lithium-Metal Polymer Batteries, ACS Appl. Mater. Interfaces 2018.

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  • 工作经历Work Experience
  • 研究方向Research Focus
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