学习研究经历 2009-2015 大连理工大学-精细化工国家重点实验室 2016年至今青岛科技大学-化学与分子工程学院 主要研究方向 过渡金属配合物的合成和催化性能研究。绿色催化研究,生物酶的化学模拟研究,光催化分解水制氢、电催化分解水制氢。过渡金属簇合物的电子结构、光学与催化特性研究等,揭示配合物与性能的构效关系。在J. Am. Chem. Soc,Chemical Communications,Inorg. Chem等著名学术期刊上发表多篇SCI论文。获得辽宁省自然科学学术成果奖二等奖1项(第1位,2014),大连市自然科学优秀学术论文一等奖(第1位,2014),博士研究生国家奖学金,2018年度青岛科技大学先进工作者。 主持科研项目及人才计划项目情况 1)国家自然科学基金青年基金,半夹心型铁铁氢化酶模拟物的合成及功能化研究 2)山东省自然科学基金青年基金,取代茂铁铁氢化酶模型配合物的合成和催化氢气氧化性能研究 3)精细化工国家重点实验室开放课题基金,铁铁氢酶模拟物的合成与催化氢气氧化性能研究 4)生态化工国家重点实验室开放课题基金,茂基氢酶模拟物的制备及其催化氢气氧化机理研究 5)青岛科技大学引进人才启动基金 6)青岛市源头创新计划青年专项,铁铁氢酶模拟物的合成与催化氢气氧化性能研究 7)横向课题,高温固体氧化物电池氢电极二次处理 8)生态化工协同创新中心青年基金 部分代表作 (1)Intramolecular Iron-Mediated C–H Bond Heterolysis with an Assist of Pendant Base in a [FeFe]- Hydrogenase Model. J. Am. Chem. Soc., 2014, (一作,IF = 14.8, 一区封面文章) (2) The influence of a S-to-S Bridge in Diiron Dithiolate Models on the Oxidation Reaction: A Mimic of the Hairox State of [FeFe]-Hydrogenases. Chem. Commun., 2014, (一作,IF = 6.8, 一区封面文章) (3) Controlled Synthesis of Mesoporous Single-Crystalline TiO2 Nanoparticles for Efficient Photocatalytic H2 Evolution, Journal of Hazardous Materials, 2020,(通讯,IF = 10.6, 一区) (4) Synthesis of MXene/Polyaniline Composite with Excellent Electrochemical properties, Journal of Materials Chemistry A, 2020, (一作,IF = 12.7, 一区) (5) Dual-Heteroatom-Doped Reduced Graphene Oxide Sheets Conjoined CoNi-Based Carbide and Sulfide Nanoparticles for Efficient Oxygen Evolution Reaction, ACS Appl. Mater. Interfaces, 2020, (通讯,IF = 8.2, 一区,学生一作) (6) Efficient Co-doped pyrrhotite Fe0.95S1.05 nanoplates for electrochemical water splitting, Chemical Engineering Journal, 2020, (一作,IF = 13.2, 一区) (7) Nickel-doped pyrrhotite iron sulfide nanosheets as a highly efficient electrocatalyst for water splitting, Journal of Materials Chemistry A, 2020, (通讯,IF = 12.7, 一区,学生一作) (8) Engineering Unique Fe(SexS1-x)2 Nanorod Bundles for Boosting Oxygen Evolution Reaction, Chemical Engineering Journal, 2021, (通讯,IF = 13.2, 一区,学生一作) (9) 1T-Phase Enriched P Doped WS2 Nanosphere for Highly Efficient Electrochemical Hydrogen Evolution Reaction, Chemical Engineering Journal, 2021, (通 讯,IF = 13.2, 一区,学生一作) (10) Novel WS2 /Fe0.95S1.05 Hierarchical Nanosphere as a Highly Efficient Electrocatalyst for Hydrogen Evolution Reaction, Chemistry - A European Journal, 2021, (通讯,IF = 5.2, 二区,学生一作) (11) Bimetal-MOF-Templated Fabrication of Porous Zn, N Co-doped Mo2C for Efficient Hydrogen Evolution Reaction,ACS Applied Energy Materials, 2021,(一作,IF = 6.0, 一区) (12) A truncated octahedron metal-organic framework derived TiO2@C@MoS2 composite with superior lithium-ion storage properties, Journal of Power Source, 2022, (通 讯,IF = 9.7, 一区,学生一作) (13)UCoO4/Co3O4 Heterojunction as a Low-Cost and Efficient Electrocatalyst for Oxygen Evolution, Inorganic Chemistry, 2023, (通 讯,IF =5.7, 一区)
|