副教授

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王丽娜

作者: 来源: 编辑: 发布日期:2025-04-01 点击:

姓名

王丽娜

出生年月

198311

性别

学历/学位

研究生/博士

政治面貌

中共党员

职称

教授

行政职务

导师类别

士生导师

招生专业

环境科学与工程,资源与环境,安全与环境功能材料

研究方向

纳米材料在环境中的应用

联系方式

lnwang2006@163.com

联系地址

山东省青岛市市北区郑州路53号青岛科技大学四方校区

学习和工作经历:

201210-至今,青岛科技大学,教授

20119-20128月,比利时鲁汶大学,博士后

20069月-20116月,兰州大学,博士(硕博连读)

20029月-20066月,聊城大学,学士

代表性科研/教研项目:

纵向项目

[1]金(银)纳米颗粒有序聚集体中表面等离子体共振增强荧光现象研究及用于生物荧光探针 国家级 20万元

[2] Au/Pt(Pd)异质纳米结构设计及其表面等离激元共振增强催化加氢研究省部级 10万元

[3] 金纳米颗粒构建“热点”及其表面等离子体共振增强荧光用于水体污染物的检测 市厅级 10万元

 

代表性代表性论文、论著、专利:

近三年主要论文

[1] sp-Hybridized Carbon Modulates the Spin States of Ir Nanozyme for Efficient Oxygen Activation. Small, 2026, DOI:  10.1002/smll.202513773.通讯作者, IF12.5

[2] sp Carbon Disrupting Axial Symmetry of Local Electric Field for Biomimetic Construction of Three-Dimensional Geometric and Electronic Structure in Nanozyme for Sensing and Microplastic Degradation[J]. Angewandte Chemie, 2025, 137(6): e202418707.通讯作者, IF16.6

[3] Interconversion of sp-hybridized chemical bonds induces piezoelectric enhanced photocatalysis. Applied Catalysis B: Environment and Energy, 2024, 349: 123868.通讯作者,IF20.2

[4] Multifamily Nanozymes for Sustainable and Eco-Friendly Marine Antifouling, Nano Letters, 2025, 12, 4878-4886.通讯作者, IF9.6

[5] Light-driven sp-C bond interconversion in black phosphorus/graphdiyne nanozyme for enhanced peroxidase-like activity and dual-mode detection of Vibrio vulnificus. Journal of Hazardous Materials, 2025, 495, 138950.通讯作者,IF11.3

[6] Mechanistic insight into sp-hybridized carbon-induced dual electronic‘push effect’ in Pt/graphdiyne/graphene for boosting oxidase-like activity. Journal of Colloid And Interface Science, 2025, 696, 137852.(通讯作者,IF9.9)

[7] Light/ultrasound enhance peroxidase activity of BaTiO3/graphdiyne/Au nanozyme for colorimetric detection of E. coli O157:H7, Sensors & Actuators: B. Chemical, 2025, 430, 137378.通讯作者,IF8.0

[8] Interconversion of sp-Hybridized Chemical Bonds Induced Piezoelectric Enhanced Photocatalysis, Applied Catalysis B: Environment and Energy, 2024, 123868 (通讯作者,IF:22.1)

[9] Boosting charge separation in graphdiyne quantum dots/hollow tubular carbon nitride heterojunction for water pollutant degradation. Journal of Colloid and lnterface Science. 2023, 646, 802-814.(通讯作者,IF9.9)

[10] Machine Learning Guided Discovery of Superoxide Dismutase Nanozymes for Androgenetic Alopecia, Nano Letters, 2022, 22(21), 8592-8600.(通讯作者, IF9.6)

[11] Ultrathin Graphdiyne/Graphene Heterostructure as a Robust Electrochemical Sensing Platform, Analytical Chemistry, 2022, 94(39), 13598-13606.(通讯作者, IF7.4)

[12] Plasmon Enhanced Peroxidase-like Activity of Nitrogen-doped Graphdiyne Oxide Quantum Dots/Gold-Silver Nanocage Heterostructures for Antimicrobial Applications, Chemistry of Materials, 2022, 34(3), 1356-1368.(通讯作者, IF8.6)

[13] AuAg nanocages/graphdiyne for rapid elimination and detection of trace pathogenic bacteria, Journal of Colloid and Interface Science, 2022, 613, 376-383.(通讯作者, IF9.9)

 

 

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