论文著作:
1.Wei, Y.; Zhao, L.*; Liang, Y.; Yuan, M.; Wu, Q.; Xue, Z.*; Qiu, X.; Zhang, J.*, Enhanced cobalt porphyrin-catalytic oxygen reduction reactions by introducing benzoyloxy substitutes. Chem. Eng. J. 2023, 476, 146575.
2.Musikavanhu, B.; Liang, Y.; Xue, Z.; Feng, L.; Zhao, L.*, Strategies for Improving Selectivity and Sensitivity of Schiff Base Fluorescent Chemosensors for Toxic and Heavy Metals. Molecules 2023, 28 (19), 6960.
3.Yuan, R.; George, S. L.; Chen, J.*; Wu, Q.; Qiu, X.; Zhao, L.*, Meso-substituted Metalloporphyrin-based Composites for Electrocatalytic Oxygen Reduction Reactions. ChemNanoMat 2023, 9 (6), e202300027.(封面文章)
4.Yuan, R.; Wei, Y.; Musikavanhu, B.; Tang, M.; Xue, Z.; Wang, A.; Zhang, J.; Qiu, X.; Zhao, L.*, Asymmetric cobalt porphyrins for oxygen reduction reactions: Boosted catalytic activity by the use of triphenylamine. Mol. Catal. 2023, 534, 112805.
5.Zhao, L.; Tang, M.; Wang, F. *; Qiu, X. *, Efficient Cu/CeO2 composites for hydrogen production from photothermal methanol steam reforming: The utility of synergism of photo and thermal catalysis. Fuel 2023, 331, 125748.
6.Wei, Y.; Zhao, L.*; Yuan, R.; Xue, Z.; Mack, J.*; Chiyumba, C.; Nyokong, T.; Zhang, J.*, Promotion of Catalytic Oxygen Reduction Reactions: The Utility of Proton Management Substituents on Cobalt Porphyrins. Inorg. Chem. 2022, 61 (33), 13085-13095.
7.Liu, M.; Wang, L.; Zhang, L.; Zhao, Y.; Chen, K.; Li, Y.; Yang, X.*; Zhao, L.*; Sun, S.*; Zhang, J.*, In-Situ Silica Xerogel Assisted Facile Synthesis of Fe-N-C Catalysts with Dense Fe-Nx Active Sites for Efficient Oxygen Reduction. Small 2022, 2104934.(封面文章)
8.Chen, Y.; Mo, Z.; Zhu, X.; Xu, Q.; Xue, Z.; Li, H.; Xu, H.; Zhao, L.*, Facilitated interfacial charge separation using triphenylamine-zinc porphyrin dyad-sensitized TiO2 nanoparticles for photocatalysis. J. Alloy. Compd. 2021, 889, 161795.
9.Muthusamy, S.; Rajalakshmi, K.; Zhu, D.; Zhu, W.*; Wang, S.; Lee, K.-B.; Xu, H.; Zhao, L.*, Dual detection of mercury (II) and lead (II) ions using a facile coumarin-based fluorescent probe via excited state intramolecular proton transfer and photo-induced electron transfer processes. Sens. Actuators, B 2021, 346, 130534.
10.Zhao, L.*; Xu, Q.; Shao, Z.; Chen, Y.; Xue, Z.; Li, H.; Zhang, J.*, Enhanced Oxygen Reduction Reaction Performance Using Intermolecular Forces Coupled with More Exposed Molecular Orbitals of Triphenylamine in Co-porphyrin Electrocatalysts. ACS Appl. Mater. Interfaces 2020, 12 (41), 45976-45986.