论文著作:
1. Huili Ran#, Xue Liu#, Jiajie Fan*, Yun Yang, Lijie Zhang, Qin Guo, Bicheng Zhu, Quanlong Xu*, Engineering BiOBr/TpBD-COF S-scheme heterointerface via phase transformation strategy for boosted photocatalytic hydrogen generation, J. Materiomics 11 (2025) 100918.
2. Huili Ran, Quanlong Xu*, Yun Yang, Huaxing Li, Jiajie Fan*, Gang Liu*, Lijie Zhang, Jun Zou, Huile Jin, Shun Wang*, Progress of covalent organic framework photocatalysts: From crystallinity-stability dilemma to photocatalytic performance improvement, ACS Catal. 14 (2024) 11675-11704.
3. Jiaorong Wang, Lihong Yuan, Pan Zhang, Jing Mao, Jiajie Fan*, Xiaoli Zhang*, Advances in zeolitic-imidazolate-framework-based catalysts for photo-/electrocatalytic water splitting, CO2 reduction and N2 reduction applications, Nanoscale 16 (2024) 7323.
4. Long Sun, Lingling Li, Juan Yang, Jiajie Fan*, Quanlong Xu*. Fabricating covalent organic framework/CdS S-scheme heterojunctions for improved solar hydrogen generation, Chin. J. Catal. 43 (2022) 350-358.
5. Long Sun, Lingling Li, Jiajie Fan*, Quanlong Xu*, Dekun Ma*. Construction of highly active WO3/TpPa-1-COF S-scheme heterojunction toward photocatalytic H2 generation, J. Mater. Sci. Technol. 123 (2022) 41-48.
6. Jinbao Chen, Ningxin Kang, Jiajie Fan*, Chunshan Lu, Kangle Lv*. Carbon nitride for photocatalytic water splitting to produce hydrogen and hydrogen peroxide, Mater. Today Chem. 26 (2022) 101028.
7. Wei Zhong, Binbin Zhao, Huogen Yu*, Jiajie Fan*. Simultaneously optimizing the number and efficiency of active Se sites in Se-rich a-MoSex nanodot cocatalysts for efficient photocatalytic H2 evolution, Sol. RRL 6 (2022) 2100832.
8. Lianxu Lv, Xianle Zhang, Jiaorong Wang, Lihong Yuan, Jiajie Fan*. Construction of Li0.5La0.5TiO3 (LLTO)-In2O3 n-n step scheme heterostructure nanorods for drastically heightening the sensing behavior in H2S gas, Mater. Chem. Phys. 295 (2023) 127085.
9. 张先乐, 刘自豪, 黄浩, 范佳杰*. In2O3/TiO2室温氢气传感器及其优异的氢敏性能, 郑州大学学报(工学版), 43(04) (2022) 104-110.
10. Xianle Zhang, Zhenzhen Li, Jiajie Fan*. An effect of rapid post-annealing temperature on the properties of cupric oxide thin films deposited by a remote plasma sputtering technique, Mater. Sci. Semicon. Proc. 137 (2022) 106227.