杨庆军

    发布日期:2025年09月07日 14:26 点击:

    杨庆军

    职称/职务

    资格教授/硕导

    邮箱

    18796023937@163.com

    研究方向

    超级电容器、锌离子电池

    个人简介

    杨庆军,男,博士,资格教授,硕导。长期从事高性能电极材料制备、超级电容器/锌离子电池储能行为及其机理研究。入选江苏特聘教授(省“双创计划”教育类项目、江苏省科协青年科技人才托举工程人才计划,主持国家青年基金1项,省部级项目3项;在Advanced MaterialsAdvanced Energy MaterialsAdvanced Functional Material等电化学储能领域高水平期刊发表SCI论文10余篇,累计被引用1000余次,3篇论文入选ESI高被引论文;授权国家发明专利1件。目前担任《Exploration》、《Carbon Neutralization》期刊青年编委。

    教育经历

    2017/09至2020/12江苏大学365公司工学博士

    2014/09至2017/06煤炭科学研究总院工学硕士

    2007/09至2011/06,中国矿业大学,安全工程学院,工学学士

    工作经历

    2025/05至今江苏大学,资格教授

    2022/06至2024/09香港理工大学,博士后

    2020/12至2022/06,江苏大学,博士后

    2011/07至2013/08山东能源集团内蒙古能源有限公司技术员/技术副科长

    研究方向

    1. 基于层状双氢氧化物晶体重构制备高性能超级电容器自支撑电极

    2. 锰/钒基氧化物膜电极制备及其水系锌离子电池性能研究

    承担项目

    1. 国家自然科学基金(青年)(22108107),2022-2024,主持,已结题

    2. 中国博士后特别资助(2021TQ0131),2021-2022,主持,已结题

    3. 中国博士后面上项目(2021M91302),2021-2022,主持,已结题

    4. 江苏特聘教授项目,2026-2028,在研

    5. 江苏大学高级人才启动基金,2025-2027,在研

    学术论文(第一作者/通讯作者)

    [1]Qingjun Yang. Confined Space Dual‐Type Quantum Dots for High‐Rate Electrochemical Energy Storage. Advanced Materials, 2024: 2401375.

    [2]Qingjun Yang. In Situ Formation of Co9S8 Quantum Dots in MOF-Derived Ternary Metal Layered Double Hydroxide Nanoarrays for High-Performance Hybrid Supercapacitors. Advanced Energy Materials, 2020, 10(7): 1903193

    [3]Qingjun Yang. Layered Double Hydroxide with Interlayer Quantum Dots and Laminate Defects for High-Performance Supercapacitor. Advanced Functional Materials, 2023: 2300149.

    [4]Qingjun Yang. Precisely Gradient S-Doping to Optimize Oxysulfide Nanowires Active Centers for High‐Rate Electrochemical Energy Storage[J]. Advanced Functional Materials, 2025, 35(16): 2418366.

    [5]Qingjun Yang*. Interlayer Nano-Dots Induced High-Rate Supercapacitors. Advanced Science, 2023: 2301398.

    [6]Qingjun Yang. MOF-derived hierarchical nanosheet arrays constructed by interconnected NiCo-alloy@NiCo-sulfide core-shell nanoparticles for high-performance asymmetric supercapacitors. Chemical Engineering Journal, 2019, 370: 666-676.

    [7]Qingjun Yang. Self-templated transformation of MOFs into layered double hydroxide nanoarrays with selectively formed Co9S8 for high-performance asymmetric supercapacitors. Chemical Engineering Journal, 2018, 354: 716-726.

    [8]Qingjun Yang. MOF-derived 3D hierarchical nanoarrays consisting of NiCoZn-S nanosheets coupled with granular NiCo2S4 nanowires for high-performance hybrid supercapacitors. Journal of Materials Chemistry A, 2019, 7(45): 26131-26138.

    [9]Qingjun Yang. In-situ construction of heterostructure (Ni, Co)Se-2 nanoarrays derived from cone-like ZIF-L for high-performance hybrid supercapacitors. Journal of Colloid and Interface Science, 2022, 608: 3049-3058.

    [10]Qingjun Yang* Granular Nanosheets Made of Interconnected NiTe2‑CoTe2 Nanoparticles on Carbon Fibers for High-Performance Hybrid Supercapacitors. ACS Applied Energy Materials, 2022, 5(3): 2817-2825.