◎研究方向 1.新型碳材料及其应用 ◎学习与工作经历 2001.09-2005.07,兰州大学,化学,理学学士; 2005.09-2009.07,兰州大学,分析化学,理学博士; 2009.06-2010.06,新加坡国立大学,博士后; 2010.08-2011.04,中国石油大学(华东),材料物理系,副教授;
2011.05-2018.06,中国石油大学(华东),材料物理与化学系,副教授; 2018.07-2024.12,中国石油大学(华东),新能源材料系,副教授; 2025.01至今,中国石油大学(华东),物理实验中心,副教授。 ◎主讲课程 1.主讲本科生必修课。《大学物理实验》《表面化学》《材料结构表征与应用》《新能源转化原理与技术》《走进材料世界》《新能源材料设计实验》《专业综合实验》《专业综合课程设计》等课程; 2.主讲研究生《新型能源材料》《新能源材料创新设计与评价》《能量储存与转化材料》等课程
◎指导研究生 累计指导硕士研究生14名。
◎承担和参与项目 1.近年来,主持的代表性科研项目: (1)分子筛模板碳及其内嵌硅复合材料的合成开发,孚能科技(赣州)股份有限公司,2024-2025,22.9999万。
(2)碳硅颗粒膨胀及力学行为研究,孚能科技(赣州)股份有限公司,2024-2025,8.11397万。 (3)新型碳同素异形体施瓦茨碳的合成探索,山东省自然科学基金面上项目,2023-2025,10万。 (4)量子点敏化p-型太阳能电池的构建、载流子传输机制及抑制电荷复合研究,国家自然科学基金青年项目,2015-2017,25万。 (5)纳米结构的串叠型太阳能电池的模型设计与性能研究,,山东省自然科学基金青年项目,2011-2014,6万。 (6)高效pn-型敏化纳米晶太阳能电池的关键材料优化与若干基本问题研究,青岛市应用基础研究计划项目人才项目,2019-2021,10万。 (7)p-型敏化太阳能电池关键界面的电荷复合机理及其抑制方法研究,中国石油大学(华东)自主创新科研计划项目,2018-2020,15万。 (8)一种可用于高效太阳能光电转化的串叠型太阳能电池的原型研究,中国石油大学(华东)自主创新科研计划项目,2011-2013,15万。 2.近年来,参与的代表性科研项目: (1)新型单线态激子裂分材料的设计与合成及其在催化单线态氧反应中的应用,国家自然科学基金重点项目,2022-2026,380.7万,第二负责人。 (2)基于表面氟钝化多孔炭正极和硬碳@石墨烯负极的高性能锂离子电容器研究,国家自然科学基金面上项目,2019-2022,60万,第二负责人。 (3)光子转换机制与应用,山东省自然科学基金优秀青年基金,2025-2027,50万,排名4。
◎论文 1.第一作者主要论文: (1)Electrodeposited nickel hydroxide on nickel foam with ultrahigh capacitance,Chemical Communications, 2008(44),(被“nature China”评为中国大陆和香港地区一周研究两点,ESI高被引论文) (2)Controllable deposition of Ag nanoparticles on carbon nanotubes as a catalyst for hydrazine oxidation,Carbon, 2008(46),(入选该杂志2008年高引用论文,ESI高被引论文) (3)Preparation of super thin and defect rich graphene shell and its application for high performance supercapacitor electrode and novel ORR catalyst support,Carbon,2023(202),(封面文章) (4)A comprehensive parametric study of factors that influence synthesis of high-quality ZTC using Ca2+ exchanged zeolite Y as the template,Carbon,2023(215) (5)Effective adhesion of Pt nanoparticles on thiolated multi-walled carbon nanotubes and their use for fabricating electrocatalysts,Carbon, 2007(45) (6)Enhanced photovoltaic performance of dye-sensitized solar cells based on ZnO microrod array/TiO2 nanoparticle hybrid films,Journal of Materials Chemistry A,2013(1) (7)Seed free and low temperature growth of ZnO nanowires in mesoporous TiO2 film for dye-sensitized solar cells with enhanced photovoltaic performance,Journal of Power Sources,2013(233) (8)Carboxylated carbon nanotubes as efficient additive to enhance the performance of different types of perovskite solar cells,Surfaces and Interfaces,2023(38) (9)Bi-doped twin crystal Zn0.5Cd0.5S photocatalyst for highly efficient photocatalytic hydrogen production from water,Applied Surface Science,2023(616) (10)Embedding SnO2 Thin Shell Protected Ag Nanowires in SnO2 ETL to Enhance the Performance of Perovskite Solar Cells,Langmuir,2022(38) (11)Metal ion (Ca2+, Mg2+, Zn2+) catalyzed synthesis of high-quality zeolite templated carbon,Microporous and Mesoporous Materials,2022(336) (12)Construction of multi-scale 1D/2D CdS/ZnS(en)0.5 nanorod/nanosheet heterojunction to boost photocatalytic hydrogen generation performance,Applied Surface Science,2021(578) 2.第二作者(通讯作者)主要论文: (1)Organic lactam induces the secondary recrystallization of zeolite β to form hierarchical porous carbon nanocages for efficient oxygen reduction and Zn-Air batteries,Carbon,2025 (2)A perylenediimide modified SiO2@TiO2 yolk-shell light-responsive nanozyme: Improved peroxidase-like activity for H2O2 and sarcosine sensing,Journal of Hazardous Materials,2022(436) (3)Tetraiodo Fe/Ni phthalocyanine-based molecular catalysts for highly efficient oxygen reduction reaction and oxygen evolution reaction: Constructing a built-in electric field with iodine groups,Journal of Colloid And Interface Science, 2024(655) (4)Hierarchical carbon with microporous core and mesoporous shell for efficient oxygen reduction application,Microporous and Mesoporous Materials,2024(368) (5)Quasi-Fe-/Zn-phthalocyanine polymer derived 2D Fe-N-C single-atom catalyst for highly efficient ORR and H2O2 sensing,Journal of Industrial and Engineering Chemistry,2023(118) (6)A template approach to designing and synthesizing hierarchical porous carbon with tri-modal pore structure and its application for high performance oxygen reduction electrocatalyst support,Microporous and Mesoporous Materials,2022(341) (7)Functionalized CNTs as Effective Additives to Improve the Efficiency of Perovskite Solar Cells,ACS Applied Energy Materials,2020(3) (8)Modifying perovskite solar cells with L(+)-cysteine at the interface between mesoporous TiO2 and perovskite,Sustainable Energy & Fuels,2020(4) (9)Enhanced Performance and Stability of Planar Perovskite Solar Cells by Interfacial Engineering using Fluorinated Aliphatic Amines,ACS Applied Energy Materials,2019(2)
◎著作 1.《新能源材料与器件综合实验》,中国石油大学(华东)规划教材,中国石油大学出版社,2025年,主编。 2.《清洁能源概论》,普通高等教育“十三五”规划教材,化学工业出版社,2020年,参编。 ◎专利 1.一种具有精确孔径的有序微孔碳的制备方法,ZL202111628999.0,2023.09.26
2.一种介孔微孔分级结构碳及其制备方法,ZL202111323459.1,2023.02.21 3.一种染料敏化太阳能电池光阳极薄膜光散射层及其制备方法,ZL201410103901.3,2016.01.26 4.后嵌入法制备ZnO纳米棒/TiO2纳米颗粒复合薄膜,ZL201210190580.6,2015.09.30 5.低密度ZnO微米棒阵列/TiO2纳米颗粒复合薄膜,ZL2012103966626, 2015.07.29 |