教师简介

2020年7月在中国科学技术大学/中国科学院金属研究所取得博士学位,同年9月加入山东大学物质创制与能量转化科学研究中心李玉良院士团队工作至今。近年来,主要从事定量电子显微学方法研究,重点是二维碳石墨炔材料在能源转换过程中的结构演化及其对性能的影响,拓展了在原子尺度直观揭示二维碳材料微观结构的电子显微学方法。在J. Am. Chem. Soc., Phys. Rev. Lett., Nat. Commun., Acta Mater., Adv. Funct. Mater., Angew. Chem. Int. Ed. 等期刊上发表论文40余篇。长期招收硕士研究生,欢迎感兴趣的同学联系lqi2020@sdu.edu.cn。

主要研究方向包括:定量电子显微学;原位透射电子显微学;石墨炔基催化材料的合成与应用。


教育经历
  • 2011-9 — 2015-6
    中国矿业大学
    材料成型及控制工程
    工学学士学位
  • 2015-9 — 2020-7
    中国科学技术大学
    材料科学与工程
    工学博士学位
工作经历
  • 2020-09 — 2023-03
     山东大学 
研究概况

高性能石墨炔基催化材料的定量电子显微学研究

研究方向
论文成果

(1) A one-step route for the conversion of Cd waste into CdS quantum dots by Acidithiobacillus sp. via unique biosynthesis pathways.RSC Chemical Biology.2024 (6):281

(2) 孔洋.Synthesis and Sodium-Ion Storage of Triazole-Substituted Graphdiyne.Journal of the American Chemical Society.2025 (147):14219

(3) 常艺琳.Highly Oriented and Ordered Co-Assembly Monolayers for Inverted Perovskite Solar Cells.ANGEWANDTE CHEMIE-INTERNATIONAL EDITION.2024

(4) 孔洋.Sulfonic Acid-Functionalized Graphdiyne for Effective Li-S Battery Separators.Journal of the American Chemical Society.2024,146 (34):23764-23774

(5) 齐璐.Controlled Growth of Metal Atom Arrays on Graphdiyne for Seawater Oxidation.Journal of the American Chemical Society.2024,146 (8):5669-5677

(6) 齐璐.Atomically dispersed Mn enhanced catalytic performance for overall water splitting on graphdiyne-coated copper hydroxide nanowire.Chinese Journal of Structural Chemistry.2024,43 (1)

(7) 齐璐.Controlled Growth of Metal Atom Arrays on Graphdiyne for Seawater Oxidation.Journal of the American Chemical Society.2024

(8) 张陆伟.Microcrystalline Nanofiber Electrode with Adaptive Intrinsic Structure and Microscopic Interface.small.2023

(9) 王涛.Multilevel Heterostructure of MoS<sub>2</sub>/GDYO for Lithium-Ion Batteries.Advanced functional materials.2023

(10) Wang, Yijie.Synthesis of Crystalline Phosphine-Graphdiyne with Self-Adaptive p?π Conjugation.Journal of the American Chemical Society.2023,145 (2):864-872

(11) 栾晓雨.In situ growth of a GDY-MnOx heterointerface for selective and efficient ammonia production.Chemical communication.2023,59 (49):7611-7614

(12) Luan, Xiaoyu.Step by Step Induced Growth of Zinc-Metal Interface on Graphdiyne for Aqueous Zinc-Ion Batteries.ANGEWANDTE CHEMIE-INTERNATIONAL EDITION.2023,62 (8)

(13) 2D graphdiyne: an emerging carbon material.Chemical Society Reviews.2022,51 (7):2691-2709

(14) Gao, Yang.Selectively Growing a Highly Active Interface of Mixed Nb–Rh Oxide/2D Carbon for Electrocatalytic Hydrogen Production.Advanced Science.2022,9 (10):e2104706

(15) Zhang, Danyan.Controlled Growth of Single-Crystal Pd Quantum Dots on 2D Carbon for Large Current Density Hydrogen Evolution.Advanced Functional Materials.2022,32 (20)

(16) 齐璐.1D Nanowire Heterojunction Electrocatalysts of MnCo2O4/GDY for Efficient Overall Water Splitting.Advanced Functional Materials.2021,32 (11)

(17) Wang, Zhongqiang.2D Graphdiyne: A Rising Star on the Horizon of Energy Conversion.Chemistry-An asian journal.2021,16 (21):3259-3271

(18) 王涛.Ultrathin graphdiyne oxide-intercalated MXene: A new heterostructure with interfacial synergistic effect for high performance lithium-ion storage.Energy Storage Materials.2023,54 :10

(19) 王一捷.Synthesis of Crystalline Phosphine-Graphdiyne with Self-Adaptive p-pi Conjugation.journal of the american chemical society.2023,145 (2):864

(20) 王玲玲.Scalable synthesis of soluble crystalline ionic-graphdiyne by controlled ion expansion.Chemical Science.2023,14 (17):4612

(21) 王进.Growth of 1D Nanorod Perovskite for Surface Passivation in FAPbI(3) Perovskite Solar Cells.Small.2022,18 (3)

(22) 安娟.Self-Expanding Ion-Transport Channels on Anodes for Fast-Charging Lithium-Ion Batteries.ANGEWANDTE CHEMIE-INTERNATIONAL EDITION.2022,61 (7)

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