1.湖南省教研教改项目,多维立体化教学模式在《大学物理》课程中的应用实践探索,湘教通(2018)436号,2018-2021,主持,结题; 2.湖南省普通高等学校课程思政建设研究项目,立德树人视域下《大学物理》课程思政改革与探索,湘教通〔2020〕233号,2021-2023,主持,结题; 3.湖南省教育厅重点项目,新型二维半导体材料d0铁磁性第一性原理研究,20A136,2021-2023,主持,结题; 4. H. Wang*, et al. Nitrogen-doped hollow carbon sphere composite Mn3O4 as an advanced host for lithium-sulfur battery. Scientific Reports, 2024 5. H. Wang, et al. Spatial Distance Effect of Negative Ion–Porous Organic Polymers on the Electrochemical Properties of Composite Solid Electrolytes. ACS Appl. Polym. Mater. , 2024 6. H. Wang*, et al. Regulated the ferromagnetism of In2O3 quantum dots by non-stoichiometry compositions. Results in Physics. , 2023 7. H. Wang*, et al. First-Principles Study of Electronic Structure And Physical Properties of MIIIN Semiconductors. Russian Journal of Physical Chemistry B. , 2021 8. H. Wang, et al. Electrical and optical properties of single-crystalline SnO2 nanowires: experiment and theory. J Mater Sci: Mater Electron.,2017 9. H. Wang*, et al. Zhong-Xiang Xie, Xia Yu , Yong Zhang. Strain effects on spin magnetic moment of cubic bixbyite In2O3: C. Modern Phys. Lett. B.,2015 10. H. Wang, et al. Enhancement of the hole-induced d0-ferromagnetism in ZnO through compensated donor-acceptor complexes: a first-principles study. Semicond. Sci. Technol.,2013 11. H. Wang, et al. Tuning the d0-ferromagnetism in In2O3 quantum dots by dangling band and vacancy based on the first-principle calculation. Modern Phys. Lett. B.,2013
|