姓名:杨恒
学历:理学博士
职称:副教授,硕士生导师,“楚天学者计划”楚天学子
研究领域:光催化能源转化,生物质资源化利用
办公电话:
电子邮件:yhxg666@sina.com; yhxyc666@whpu.edu.cn
(一) 教育和工作经历
2022.12~至今 武汉轻工大学 化学与环境工程学院 教师
2018.09~2022.06 华中师范大学 无机化学 理学博士
2017.09~2018.07 武汉市光谷第二高级中学 教师
2014.09~2017.06 中南民族大学 有机化学 理学硕士
2009.09~2014.06 湖北师范大学 应用化学 理学学士
(二)教学课程
1. 课程名称(本科生) 《无机及分析化学I》,《无机及分析化学实验》,《材料信息学》
2. 课程名称(研究生) 《数据处理与试验设计》
(三)主要研究方向
1. 主要从事框架材料(MOFs/COFs)的定向设计与光催化能源转化:围绕太阳能驱动的小分子转化,系统开展光催化CO₂还原、光催化分解水制H₂、有机物氧化耦合分解水制H₂,以及光催化合成H₂O₂等方向的研究,致力于开发高效、稳定的新型框架基光催化体系。
2. 致力于生物质资源化利用:农业废弃物等生物质资源的催化转化与增值化利用研究,探索将其转化为高附加值化学品或燃料的绿色路径。
(四)科研项目
[1] 国家自然科学基金青年项目(2025-2027, 22402156),负责人
[2] 武汉市自然科学基金探索计划(晨光计划)(2025-2027,2025040601020169),负责人
[3] 国家自然科学基金面上项目(2022-2025, 22171097),参与
[4] 生物质纤维与生态染整湖北省重点实验室开放基金项目(2024-2025, STRZ2024),负责人
[5] 武汉轻工大学校立项目一般项目(2023-2025, WHPU2024Y18),负责人
[6] 校企合作项目 (2024-2027, 2024-zh-005),负责人
(五)代表性论文
[1] H. Yang, Y. Xia, J. Guo, L. Xue, S. Carabineiro, K. Lv, L. Wen*, S. Ouyang. Highly-dispersed CdS nanoparticles coating hierarchical Ni@NC derived from ultrathin nanosheets NMOF-Ni: photocatalytic hydrogen evolution coupled with alcohol oxidation, Applied Catalysis B: Environment and Energy, 2025, 362, 124700. IF:21.1.
[2] K. Tang, W. Deng, N. Wang, Y. Xia, X. Wu, H. Yang*, Triazine-based COF/TiO2 S-scheme heterojunction with oxygen vacancies for efficient photocatalytic CO2 reduction, Chinese Journal of Catalysis, 2026, 83, 244-257. IF: 17.7.
[3] K. Zhao1, N. Gan1, M. Cui, Y. Xia, X. Li, H. Yang*, J. Yan*, B. Zhu*, Novel organic/inorganic NH2-UiO-66/ZnO heterojunction for enhanced photocatalytic H2O2 production in pure water, Chemical Communications, 2025, 61, 16214–16217. IF: 4.2.
[4] H. Yang1*, L. Wang,1 Y. Xia, X. Li, J. Yan, L. Wen*, Heterojunction and crystallinity-mediated charge separation in β-ketoenamine covalent organic frameworks for synergistically improved photocatalytic H2 evolution, Dalton Transactions, 2025, 54, 14790–14799. IF: 3.3.
[5] H. Yang1, J. Guo1, Y. Xia, J. Yan*, L. Wen*, Schottky-assisted S-scheme heterojunction photocatalyst CdS/Pt@NU-1000 for efficient visible-light-driven H2 evolution,Journal of Materials Science & Technology,2024, 195, 155–164. IF: 14.3.
[6] Y. Xia*, K. Zhang, H. Yang*, L. Shi, Q. Yi*, Improving photocatalytic H2O2 production over iCOF/Bi2O3 S-scheme heterojunction in pure water via dual channel pathways, Acta Physico-Chimica Sinica, 2024, 40, 2407012. IF: 13.5.
[7] H. Yang, C. Lai, M. Wu, S. Wang, Y. Xia, K. Lv, L. Wen*, Novel amino-functionalized Ni(II)-based MOFs for efficiently photocatalytic reduction of CO2 to CO with superior selectivity under visible-light illumination, Chemical Engineering Journal, 2023, 555, 140425. IF: 13.2.
[8] H. Yang, C. Yang, N. Zhang, K. Mo, Q. Li, K. Lv*, J. Fan, L. Wen*, Drastic promotion of the photoreactivity of MOF ultrathin nanosheets towards hydrogen production by deposition with CdS nanorods, Applied Catalysis B: Environment and Energy, 2021, 285, 119801. IF: 21.1(ESI 高被引).
[9] Y. Zhang, L. Xue, Z. Xue, H. Zhu, W. Chen, F. Wang*,H. Yang*, L. Wen, Realizing pure white light emission by adjusting the molar ratio of Eu3+/Tb3+ in two new Ln-based metal-organic frameworks, Journal of Molecular Structure, 2025, 1322, 140689. IF:4.7.
[10] H. Yang1, M. Zhao1, J. Ma, J. Zhang, P. Wu*, W. Liu,L. Wen*, Noble-metal-free photocatalyst system obtained using BODIPY-based MOFs for highly efficient visible-light-driven H2 evolution. Journal of Materials Chemistry A,2019, 7,20742-20749. IF:9.5.
[11] H. Yang, J. Wang, J. Ma, H. Yang, J. Zhang, K. Lv, L. Wen*, T. Peng*, A novel BODIPY-based MOF photocatalyst for efficient visible-light-driven hydrogen evolution, Journal of Materials Chemistry A, 2019, 7, 10439-10445. IF:9.5.
[12] X. Li1, H. Yang1, K. Lv*, L. Wen, Y. Liu*, Fabrication of porous TiO2 nanosheets assembly for improved photoreactivity towards X3B dye degradation and NO oxidation, Applied Surface Science, 2020, 503, 144080. IF=6.9.
[13] S. Gu, D. Zhang, S. Luo, H. Yang*, Construction of direct Z-scheme photocatalyst by Mg1.2Ti1.8O5 and g-C3N4 nanosheets toward photocatalytic H2 production and disinfection, International Journal of Photoenergy, 2019, 6307858. IF:2.7.
[14] H. Yang, W. Yang, K. Lv*, J. Zhu*, Y. Xia, D. Tang, L. Wen, Effect of the structure of CN/Silica composite support on the catalytic performances of Co3O4 for CO oxidation, Microporous and mesoporous Materials, 2018, 255, 36-43. IF:4.7.
[15] H. Yang, K. Lv*, J. Zhu*, Q. Li, D. Tang, W. Ho, M. Li, S. Carabineiro, Effect of mesoporous g-C3N4 substrate on catalytic oxidation of CO over Co3O4, Applied Surface Science, 2017, 401, 333-340. IF=6.9.
(六)授权发明专利
[1] 中国发明专利:朱君江,杨恒,李海龙,吴来燕,钟林赟,《一种多孔La1-xCexCoO3钙钛矿催化剂的制备方法及应用》;已授权,专利号:201510013888.7
[2] 中国发明专利:李覃,夏阳,赵婷婷,石婷,杨恒,吕康乐,李玫,《一种硫掺杂g-C3N4/硫化锌镉复合光催化剂的制备方法》;已授权,专利号:201710619407.6
农业废弃物资源化利用湖北省重点实验室