论文著作:
1. Xu, Mei-Ling; Lu, Meng; Qin, Guan-Ying; Wu, Xiu-Mei; Yu, Ting; Zhang, Li-Na; Li, Kui*; Cheng, Xin*; Lan, Ya-Qian*, Piezo-Photocatalytic Synergy in BiFeO3@COF Z-Scheme Heterostructures for High-Efficiency Overall Water Splitting, Angew. Chem. Int. Ed., 2022, 61, e202210700 (热点,高倍引论文).
2. Kui Li; Min Han; Rong Chen; Shun-Li Li; Shuai-Lei Xie; Chengyu Mao; Xianhui Bu; X.-L. Cao; Long-Zhang Dong; Pingyun Feng*; Ya-Qian Lan*, Hexagonal@Cubic CdS Core@Shell Nanorod Photocatalyst for Highly Active Production of H2 with Unprecedented Stability. Adv. Mater., 2016, 28, 8906–8911.
3. Kui Li; Rong Chen; Shun-Li Li; Min Han; Shuai-Lei Xie; Jian-Chun Bao*; Zhi-Hui Dai; Ya-Qian Lan*, Self-assembly of a mesoporous ZnS/mediating interface/CdS heterostructure with enhanced visible-light hydrogen-production activity and excellent stability. Chem. Sci., 2015, 6, 5263-5268.
4. Kui Li*; Ye-Zhan Lin; Kai Wang; Yanju Wang; Yu Zhang; Yuzhuo Zhang*; Fu-Tian Liu, Rational design of cocatalyst system for improving the photocatalytic hydrogen evolution activity of graphite carbon nitride, Appl. Catal. B-Environ., 2020, 268, 118402.
5. Zhang, Zhijie; Li, Xun; Tang, Huiling; Wu, Junhao; Yao, Chunxia; Li, Kui*, Cs2CuBr4 perovskite quantum dots confined in mesoporous CuO framework as a p-n type S-scheme heterojunction for efficient CO2 photoconversion, Chin. Chem. Lett., 35(11), 109700.
6. Xu, Mei-Ling; Liu, Ling-Wang; Wang, Kai; Dou, Yi-Chuan; Li, Kui;* Cheng, Xin;* Zhang, Feng-Ming,* Hierarchical-metal–organic framework-templated Cu0.5Zn0.5In2S4-rGO-g-C3N4 : flexible synthesis and enhanced photocatalytic activity, J. Mater. Chem. A, 2020, 8(42), 22124-22133.
7. Kui Li; Zhipeng Xu; Songfang Zhao;* Xiangying Meng; Ruliang Zhang;* Jinhui Li; Jinfeng Leng; Guoping Zhang; Duxia Cao*; Rong Sun. Biomimetic, Recyclable, Highly Stretchable and Self-healing Conductors Enabled by Dual Reversible Bonds, Chem. Eng. J., 2019, 371, 203-212.
8. Kui Li*; Yu Zhang; Ye-Zhan Lin; Kai Wang; Fu-Tian Liu, Versatile Functional Porous Cobalt– Nickel Phosphide–Carbon Cocatalyst Derived from a Metal–Organic Framework for Boosting the Photocatalytic Activity of Graphitic Carbon Nitride. ACSAppl. Mater. Interfaces, 2019, 11,
28918−28927.
9. Mei-Ling Xu, Xiao-Jie Jiang, Jia-Ran Li, Fu-Ji Wang, Kui Li*, Xin Cheng*, Self-Assembly of 3D Hollow BiOBr@Bi-MOF Heterostructure with Enhanced Photocatalytic Degradation of Dyes. ACS Appl. Mater. Interfaces, 2021, 13, 56171-56180.
10. Kui Li; Rong Chen; Shun-Li Li; Shuai-Lei Xie; Long-Zhang Dong; Zhen-Hui Kang*; Jian-Chun Bao*; Ya-Qian Lan*, Engineering the Morphology and Configuration of Ternary Heterostructuresfor Improving Their Photocatalytic Activity. ACSAppl. Mater. Interfaces, 2016, 8, 14535- 14541.
11. Kui Li; Rong Chen; Shun-Li Li; Shuai-Lei Xie; Xue-Li Cao; Long-Zhang Dong; Jian-Chun Bao*; Ya-Qian Lan*, Engineering Zn1–xCdxS/CdS Heterostructures with Enhanced Photocatalytic Activity. ACS Appl. Mater. Interfaces, 2016, 8, 4516-4522.
12. Li, Tao; He, Xiong; Wu, Junhao; Pan, Guangyu; Wang, Dandan; Zhang, Fan; Gao, Limin; Xie, Haiquan; Li, Kui*, Construction of a Zn0.65Cd0.35S/SnO2 S-scheme heterojunction for efficient photocatalytic CO2 reduction, J. Mater. Chem. C, 2024, 12(21), 7759-7765.
13. He, Xiong; Li, Tao; Zhang, Fan; Gao, Limin; Wu, Junhao; Mao, Yubo; Xie, Haiquan; Li, Kui*, Effect of substrate and oxygen-argon ratio on photocatalytic CO2 reduction in ITO films prepared by magnetron sputtering, Ceram. Inter. 2024, 50, 19881-19885.
14. Tao Li, Jian-Dong Cui, Li-Min Gao, Ye-Zhan Lin, Rui Li, Haiquan Xie, Yu Zhang, and Kui Li*. Competitive self-assembly of PANI confined MoS2 boosting the photocatalytic activity of graphitic carbon nitride, ACS Sustainable Chem. Eng., 2020, 8(35), 13352- 13361.
15. Ye-Zhan Lin, Kai Wang, Yu Zhang, Yi-Chuan Dou, Yi-Jin Yang, Mei-Ling Xu, Yanju Wang, Fu-Tian Liu and Kui Li*. Metal–organic frameworks-derived CdS-NiO heterostructure with modulated morphology and enhanced photocatalytic hydrogen evolution activity in pure water, J. Mater. Chem. C, 2020, 8, 10071-10077.
16. Tao Li,† Kai Wang,† Qi-Tao Fang, Yu Zhang, Bo Wang, Rui Li, Ye-Zhan Lin, Ke-Cheng Liu, Hai-Quan Xie and Kui Li,* J. Mater. Chem. C, 2020, 8, 14540- 14547.
17. Kui Li*; Ye-Zhan Lin; Yu Zhang; Mei-Ling Xu; Yu Zhang. Boosting the photocatalytic activity of graphite carbon nitride by design of novel MoS2-transition metals heterojunctions cocatalyst, J. Mater. Chem. C, 2019, 7, 13211-13217.
18. Ling-Zhi Qin,† Ye-Zhan Lin,† Yi-Chuan Dou, Yi-Jin Yang, Kui Li,* Tao Li* and Fu-Tian Liu. Toward enhanced photocatalytic activity of graphite carbon nitride through rational design of noble metal-free dual cocatalyst, Nanoscale, 2020, 12, 13829– 13837.
19. Mei-Ling Xu, Jia-Ran Li, Xiu-Mei Wu, Ting Yu, Guan-Ying Qin, Fu-Ji Wang, Li-Na Zhang, Kui Li,* Xin Cheng,* The excellent photocatalytic overall water splitting activity of TpPa-1-COF excited via MOF derived FeP-PC and α-Fe2O3 dual cocatalysts, Appl. Surf. Sci., 2022, 602, 154371.
20. Yuxuan Liu; Xinlu Zhang; Ruixian Liu; Kai Jiang; Changling Zhou; Futian Liu;* Kui Li*, Excellent mechanical property of fast hot pressure sintering CaZr4(PO4)6 low thermal expansion ceramics, Ceram. Inter. 2022, 48, 36758-36763.
21. Arif, Nayab; Zafar, Muhammad Nadeem; Batool, Maria; Humayun, Muhammad; Iqbal, Muhammad Ahsan; Younis, Muhammad; Li, Luyan; Li, Kui*; Zeng, Yu-Jia*, Recent advances and perspectives on iron-based photocatalysts, J. Mater. Chem. C, 2024, DOI: 10.1039/D4TC01062K.
22. Kui Li; Sama, N.; Li, T.; Rémiens, D.; Du, G.; Dong, X.; Wang, G.*, Effect of interface configurations on the dynamic scaling behavior of Pb(Zr0.53Ti0.47)O3 thin films, Appl. Phys. Lett. 2014, 104 (9), 092904.
23. Kui Li; Rémiens, D.; Dong, X.; Costecalde, J.; Sama, N.; Li, T.; Du, G.; Chen, Y.; Wang, G.*,
Low-temperature crystallization of high performance Pb0.4Sr0.6TiO3 films compatible with the current silicon-based microelectronic technology, Appl. Phys. Lett. 2013, 102 (21), 212901.
24. Kui Li; Dong, X.; Rémiens, D.; Lei, X.; Li, T.; Du, G.; Wang, G.*, Low Temperature Deposition of High Performance Lead Strontium Titanate Thin Films by in situ RF Magnetron Sputtering, J. Amer. Ceram. Soc. 2013, 96 (6), 1682-1684.