论文著作:
1.Zhang, B.; Zhu, Y.; Shi, S.; Li, Y.; Luo, Y.; Huang, Z.; Xiao, W.; Wang, S.; Zhang, P.; Shu, Y.; Chen, C.*, Embedding Hierarchical Pores by Mechanochemistry in Carbonates with Superior Chemoselective Catalysis and Stability, Inorganic Chemistry, 2023, 62, 32, 12920-12930.
2.Wan, L.; Yuan, M.; Xiong, G.; Shi, S.; Xiao, W.; Chen, C.*; Ai, F., Penetrating Honeycomb Structured MOF Flexible Membrane with Ultra-high Flux and Excellent Catalytic Activity, Journal of Industrial and Engineering Chemistry, 2023, 125, 294-302.
3.Jin, C.; Shi, S.; Liao, S.; Liu, S.; Xia, S.; Luo, Y.; Wang, S.; Wang, H.; Chen, C.*, Post-Synthetic Ligand Exchange by Mechanochemistry: towards Green, Efficient and Large-scale Preparation of Functional Metal-Organic Frameworks, Chemistry of Materials, 2023, 35, 4489-4497.
4.Liu, S.; Yang, Y.; Xiao, W.; Xia, S.; Jin, C.; Wang, W.; Li, S.; Zhong, M.; Wang, S.; Chen, C.*, Metal-organic frameworks derived porous MoS2/CdS heterostructure for efficient photocatalytic performance towards hydrogen evolution and organic pollutants, International Journal of Hydrogen Energy, 2023.
5.Chen, C.; Zhao, C.; Zhao, D.; Ding, S.; Chen, C.*, The Importance of Constructing Tripie-functional Sr2P2O7/Ni2P Catalysts for Smoothing Hydrogenation Ring-rearrangment of Biomass-derived Furfural Compounds in Water, Journal of Catalysis, 2023, 421, 117-133.
6.Wang, W.; Xiao, W.; Zhu, Y.; Liu S.; Wang, S.; Chen, C.*, Fabrication of a highly dispersed Co3O4-modified MOF-derived ZnO@ZnS porous heterostructure for efficient photocatalytic hydrogen production, Cryst Eng Comm, 2023, 25, 1358-1364.
7.Wang, L.; Peng, H.; Shi, S.; Li, S.; Ding, S.; Zhao, D.; Wang, S.; Chen, C.*, Microwave non-thermal fusion of MOFs derived Cu-O-Ce interface for boosting CO preferential oxidation, Applied Surface Science, 2023, 610, 155466.
8.Wang, L.; Peng, H.; Li, S.; Shi, S.; Ding, S.; Zhao, D.; Wang, S.; Chen, C.*, Fine-tuning Cu–Co–Ce oxidation activity interface by unique microwave electromagnetic loss for boosting CO preferential oxidation in H2 steam, International Journal of Hydrogen Energy, 2022.
9.Xu, M.; Xu, Y.; Liu, Y.; Zhao, D.; Ding, S.; Chen, C.*, NiyCo2-yP alloy catalysts with assistance of Y for boosting Low-pressure hydrogenation transformation of Biomass-derived levulinic acid or furfural in water. Applied Surface Science, 2022, 601, 154142.
10.Zhang, B.; Li, M.; Lei, H.; Chen, J.;Wang, S.; Chen, C.*, Combining shell confinement and outside decoration to boost the selectivity of Pt nanocatalysts in hollow-flower like Zr-MOFs double shell micro-reactor for hydrogenation cinnamaldehyde to unsaturated alcohol, Applied Surface Science, 2022, 599, 153899.
11.Liu, S.; Xiao, W.; Jin, C.; Xia, S.; Wang, W.; Jiang, X.; Li, L.; Wang, S.; Chen, C.*, MOFs derived CdS/CdO heterojunction photoanode for high-efficient water splitting, Applied Surface Science, 2022, 605, 154687.
12.Liang, S.; Shi, S.; Ding, S.; Xiao, W.; Wang, H.; Wang, S; Zeng, R.; Chen, C.*; Song, W., Construction of a transition-metal-free mesoporous organic phenanthroline-based polymeric catalyst for boosting direct activation of aromatic C-H bonds, Catalysis Science and Technology, 2022, 12, 6650-6654.
13.Yu, Y.; Wan, L.; Cheng, W.; Shi, S.; Yuan, M.; Luo, Y.; Mei, L.; Xu, T.; Wang, S.; Zhao, D.; Xiao, W.; Ai, F.; Fang, Q.; Chen, C.*, Self-Stirring Microcatalysts: Large-Scale, High-Throughput, and Controllable Preparation and Application. Inorganic Chemistry. 2022, 61, 30, 11757-11765
14.Jin, C.; Chen, Z.; Shi, S.; Li, Y.; Liu, S.; Wang, S.; Wang, H.; Chen, C.*, Green and Large-Scale Preparation of Chiral Metal-Organic Frameworks via Mechanochemistry. Inorganic Chemistry. 2022, 61, 31, 12190-12196.
15.Xu, M.; Jia, X.; Zhao, D.; Zhao, C.; Ke, H.; Chen, C.*, Modification of Ni2P with LaPO4 for efficiently photocatalytic and electrocatalytic production of green-H2. Catalysis Today. 2022, 402, 310-318.
16.Wang, L.; Peng, H.; Xie, W.; Shi, S.; Yuan, M.; Zhao, D.; Wang, S.; Chen, C.*, Microwave pyrolysis-engineered MOFs derivatives for efficient preferential CO oxidation in H2-rich stream. Chemical Engineering Science. 2022, 256, 117675.
17.Wang, L.; Peng H.; Shi, S.; Hu, Z.; Zhang, B.; Ding, S.; Wang, S.; Chen, C.*, Metal-organic framework derived hollow CuO/CeO2 nano-sphere: To expose more highly dispersed Cu-O-Ce interface for enhancing preferential CO oxidation. Applied Surface Science. 2022, 573, 151611.
18.Jiang, X.; Liu, S.; Wang, W.; Shi, S.; Zeng, Z.; Chen, C.*, Enhanced Singlet Oxygen Generation in PCN-224-Zn without the Need of Electron-Hole Separation for Efficient Photocatalytic Water Disinfection. Applied Surface Science. 2021, 575, 151769.
19.Yu, Y.; Zhong, Y.; Xie, D.; Luo, G.; Mao, Y.; Yuan, M.; Xiao, W.; Wang, S.; Chen, C.*, Fe3O4 Nanorods Coated with ZIF-8 and Decorated with Pt Nanoparticles as Magnetically Actuated Nanoscale Stirring Bars for Catalytic Dye Degradation, H2 Production, and Hydrogenation of Olefins. ACS Applied Nano Materials. 2021, 4, 10999-11006.
20.Shi, S.; Yu, Y.; Zhang, B.; Zhong, Y.; Wang, L.; Wang, S.; Ding, S.; Chen, C.*, Step by Step Construction of Multifunctional Hollow Double Shell MNPs@MOF as a Powerful Tandem/Cascade Catalyst. Frontiers in Chemistry. 2021, 9, 738736.
21.Shi, S.; Zhong, Y.; Hu, Z.; Wang, L.; Yuan, M.; Ding, S.; Wang, S.; Chen, C.*, Chiral Yolk-Shell MOF as an Efficient Nanoreactor for Asymmetric Catalysis in Organic-Aqueous Two-Phase System. Inorganic Chemistry. 2021, 60, 12714-12718.
22.Zhang, Y.; Dai, B.; Zhao, D.; Zhang, D.; Xu, M.; He, Xiang.; Chen, C.*, Promotion effects of PrPO4 for the hydrogenation transformation of biomass-derived compounds over Pr–Ni–P composites. Materials Advances. 2021, 2, 3927-3939.
23.Shen, X.; Li, W.; Ding, Shun.; Ma, Xiao.; Wu, Shao.; Xiao, W.; Zeng, Rong.; Hong, San.; Chen, Chao.*, Construction of mesoporous ceria-supported gold catalysts with rich oxygen vacancies for efficient CO oxidation. Journal of Rare Earths. 2022, 40, 434-442.
24.Wang, G.; Geng, J.; Qi, X.; Du, T.; Zeng, Y.; Yu, R.; Yuan, M.; Peng, H.; Li, H.; Chen, C.*, Rheological performances and enhanced sedimentation stability of mesoporous Fe3O4 nanospheres in magnetorheological fluid. Journal of Molecular Liquids. 2021, 336, 116389.
25.He, X.; Dai B.; Zhang Y.; Zhao D.; Zhang D.; Liang R.; Chen C.*, Unique Capability of NdPO4 to Activate Hydrogen for Efficient Hydrogenation of Furfural to Furfuryl Alcohol over Nd-Co-P Composites. Journal of Rare Earths. 2021, 40(7): 1073-1082.
26.Chen, Z.; Yan, X.; Li, M.; Wang, S.; Chen, C.*, Defect-Engineered Chiral Metal-Organic Frameworks for Efficient Asymmetric Aldol Reaction. Inorganic chemistry. 2021, 60, 4362-4365.
27.Hu, Z.; Shi, S.; Wang, L.; Chen, S.; You, Y.; Wang, S.; Chen, C.*, MOF-derived AgCo alloy nanoparticle protected by mesoporous carbon as chemoselective catalyst for hydrogenation of citral. Applied Surface Science 2020, 528, 146992.
28.Mao, Y.; Wang, Q.; Yu, L.; Qian, H.; Deng, S.; Xiao, W.; Zhao, D.; Chen, C.*, A 2-Fold Interpenetrated Nitrogen-Rich Metal-Organic Framework for Rapid and Selective Adsorption of Congo Red. Inorganic Chemistry. 2020, 12, 8213-8219.
29.Liu, Y.; Zhang, D.; Li, X.; Deng, S.; Zhao, D.; Zhang, N.; Chen, C.*, Construction of highly-dispersed and composition-adjustable CoxN in stable Co@CoxN@C nanocomposite catalysts via a dual-ligand-MOF strategy for the selective hydrogenation of citral. Applied Surface Science. 2020, 505, 144387.
30.Li, W.; Shen, X.; Zeng, R.; Chen, J.; Xiao, W.; Ding, S.; Chen, C.*; Zhang, R.; Zhang, N., Constructing copper-ceria nanosheets with high concentration of interfacial active sites for enhanced performance in CO oxidation. Applied Surface Science. 2019, 492, 818-825.
31.Zhong, Y.; Mao, Y.; Shi, S.; Wan, M.; Ma, C.; Wang, S.; Chen, C.*; Zhao, D.; Zhang, N., Fabrication of Magnetic Pd/MOF Hollow Nanospheres with Double-Shell Structure: Toward Highly Efficient and Recyclable Nanocatalysts for Hydrogenation Reaction. Acs Applied Materials & Interfaces. 2019, 35, 32251-32260.
32.Liu, X.; Ma, R.; Zhao, D.; Chen, C.*; Zhang, N., Construction of a Highly-Dispersed and Efficient Charge-Separation-Transferring Interface by Oxidatively-Bonding Rh in Cu2O Surface for Dye Photodegradation. Journal of Physical Chemistry C. 2019, 18, 11611-11620.
33.Lin, L.; Huang, S.; Zhu, Y.; Du, B.; Zhang, Z.; Chen, C.*; Wang, X.; Zhang, N., Construction of CdS/MoS2 heterojunction from core-shell MoS2@Cd-MOF for efficient photocatalytic hydrogen evolution. Dalton Transactions. 2019, 8, 2715-2721.
34.Li, X.; Zhang, Z.; Xiao, W.; Deng, S.; Chen, C.*; Zhang, N., Mechanochemistry-assisted encapsulation of metal nanoparticles in MOF matrices via a sacrificial strategy. Journal of Materials Chemistry A. 2019, 24, 14504-14509.
35.Zhang, X.; Chen, Z.; Yang, X.; Li, M.; Chen, C.*; Zhang, N., The fixation of carbon dioxide with epoxides catalyzed by cation-exchanged metal-organic framework. Microporous and Mesoporous Materials. 2018, 258, 55-61.
36.Yan, X.; Wang, K.; Xu, X.; Wang, S.; Ning, Q.; Xiao, W.; Zhang, N.; Chen, Z.; Chen, C.*, Bronsted Basicity in Metal-Organic Framework-808 and Its Application in Base-Free Catalysis. Inorganic Chemistry. 2018, 14, 8033-8036.
37.Liu, X.; Li, X.; Qian, H.; Chi, J.; Chen, B.; Wang, S.; Chen, C.*; Zhang, N., Preferential CO oxidation over CuO-CeO2 catalyst synthesized from MOF with nitrogen-containing ligand as precursor. International Journal of Hydrogen Energy. 2018, 52, 23299-23309.
38.Wan, M.; Zhang, X.; Li, M.; Chen, B.; Yin, J.; Jin, H.; Lin, L.; Chen, C.*; Zhang, N., Hollow Pd/MOF Nanosphere with Double Shells as Multifunctional Catalyst for Hydrogenation Reaction. Small. 2017, 13, 1701395.
39.Song, L.; Zhang, X.; Chen, C.*; Liu, X.; Zhang, N., UTSA-16 as an efficient microporous catalyst for CO2 conversion to cyclic carbonates. Microporous and Mesoporous Materials. 2017, 241, 36-42.
40.Chen, D.; Luo, R.; Li, M.; Wen, M.; Li, Y.; Chen, C.*; Zhang, N., Salen (Co(III)) imprisoned within pores of a metal-organic framework by post-synthetic modification and its asymmetric catalysis for CO2 fixation at room temperature. Chemical Communications. 2017, 79, 10930-10933.