代表性教学科研项目: 1、掺杂石墨烯封装的金属调控电催化分解H2S性能的密度泛函理论研究,山东省自然科学基金面上项目(ZR2021MB104),2022.1-2024.12,主持。 2、生物基呋喃衍生物选择氢解合成α,ω -二元醇双功能催化剂和反应机理的研究,国家自然科学基金青年基金(21303238),2014.01-2016.12,主持。 3、纤维素高效转化制备化学品的催化基础,国家自然科学基金重点项目(21433001),2015.01-2019.12,课题负责人。 4、负载型金属催化剂上丙三醇定向转化为丙二醇的理论探索,山东省自然科学基金青年基金(ZR2010BQ001),2010.11-2013.11,主持。 5、钼基催化剂上四氢糠醇C-O键选择氢解合成戊二醇,青岛市应用基础研究计划(14-2-4-74-jch),2014.09-2016.09,主持。 6、氮掺杂石墨烯封装金属催化电解硫化氢的密度泛函理论研究,青岛理工大学环境科学与工程一流学科(培育)开放课题,2019.05-2021.09,主持。 7、《物理化学》优质课程资源建设,青岛理工大学本科教学改革与研究项目,2017.01-2019.03,主持。 8、《物理化学》教学模式改革示范课程,青岛理工大学本科教学改革与研究项目,2020.11-2022.06,主持。 9、《物理化学》课程思政的探索与实践,青岛理工大学本科教学改革与研究项目,2022.9-2023.9,主持。 代表性论文: 1. Juan Du, Yuxiu Han, Haobo Zhang, Xueqing Gao, Jing Guan*, Aibing Chen*. CoP2O6-assisted copper/carbon catalyst for electrocatalytic reduction of CO2 to formate. ACS Nano, 2023, 17, 11, 10055–10064. 2. Juan Du, Aibing Chen*, Senlin Hou*, Jing Guan*. CNT modified by mesoporous carbon anchored by Ni nanoparticles for CO2 electrochemical reduction. Carbon Energy, 2022, 4, 1274–1284. 3. Mo Zhang, Jing Guan, Yunchuan Tu, Shiming Chen, Yong Wang, Suheng Wang, Liang Yu, Chao Ma, Dehui Deng*, Xinhe Bao. Highly efficient H2 production from H2S via a robust graphene-encapsulated metal catalyst. Energy & Environmental Science, 2020, 13, 119−126.(共同一作) 4. Mo Zhang, Jing Guan, Yunchuan Tu, Suheng Wang, Dehui Deng*. Highly efficient conversion of surplus electricity to hydrogen energy via polysulfides redox. The Innovation, 2021, 2, 100144. (共同一作) 5. Wanyuan Wang, Chengxin Wen, Jing Guan*, Hengxiao Man*, Junjie Bian*. Insight on photocatalytic oxidation of high concentration NO over BiOCl/Bi2WO6 under visible light. Journal of Industrial and Engineering Chemistry, 2021, 103, 305−313. 6. Weiqiang Tan*, Jifang Zheng, Le Chen, Huining Chai, Jing Guan*. Efficient one-pot synthesis of oxaperylenone derivatives promoted by propylphosphonic anhydride. Tetrahedron, 2021, 132170. 7. Jing Guan, Jing Li, Yifeng Yu, Xindong Mu*, Aibing Chen*. DFT studies of the selective C−O hydrogenolysis and ring-opening of biomass-derived tetrahydrofurfuryl alcohol over Rh(111) surfaces. Journal of Physical Chemistry C, 2016, 120, 19124−19134. 8. 关静,王海松,姜义军,王喜成,曹泉,徐国强,李滨,牟新东*. 非化石基原料路线的化工生物融合转化. 中国科学:化学, 2015, 45(5):438−453. 9. Jing Guan, Gongming Peng, Quan Cao, Xindong Mu*. Role of MoO3 on a rhodium catalyst in the selective hydrogenolysis of biomass-derived tetrahydrofurfuryl alcohol into 1,5-pentanediol. Journal of Physical Chemistry C, 2014, 118(44), 25555−25566. 10. Jing Guan, Xicheng Wang, Xiaoyan Wang, Xindong Mu*. Thermodynamics of glycerol hydrogenolysis to propanediols over supported copper clusters: insights from first-principles study. Science China- Chemistry, 2013, 56, 763−772. 11. Jing Guan, Xiulian Pan*, Xin Liu, Xinhe Bao*. Syngas segregation induced by confinement in carbon nanotubes: A combined first-principle and Monte-Carlo study. Journal of Physical Chemistry C, 2009, 113, 21687−21692. |