| 论文 | 
	
	
		| 1 | 
		Yu Qi, Fuxiang Zhang*, et al., Efficient overall water splitting of suspended photocatalyst boosted by metal-support interaction. Joule, 2024, 8, 193-203. | 
	
		| 2 | 
		Yu Qi, Fuxiang Zhang*, Recent advances in redox-based Z-scheme overall water splitting under visible light irradiation, The Journal of Physical Chemistry Letters, 2024, 15, 2976–2987. | 
	
		| 3 | 
		Yu Qi, Can Li*, Fuxiang Zhang*, et al., Unraveling of cocatalysts photodeposited selectively on facets of BiVO4 to boost solar water splitting. Nature Communications 2022, 13: 484. | 
	
		| 4 | 
		Yu Qi, Fuxiang Zhang*,  Artificial photosynthesis near the biological limit. Joule, 2020, 4, 1364-1366. | 
	
		| 5 | 
		Yu Qi, Fuxiang Zhang*, Overall water splitting over conjugated polymer photocatalysts with crystal facets modulated. Science China  Chemistry, 2020, 63(11), 1582-1583. | 
	
		| 6 | 
		Yu Qi, Can Li*, Fuxiang Zhang*, et al., Redox-based visible-light-driven Z-scheme overall water splitting with apparent quantum efficiency exceeding 10%. Joule, 2018, 2, 2393-2402. | 
	
		| 7 | 
		Yu Qi, Can Li*, Fuxiang Zhang*, et al.,  Inhibiting competing reactions of iodate/iodide redox mediators by surface modification of photocatalysts to enable Z-scheme overall water splitting. Applied Catalysis B: Environmental, 2018, 224, 579−585. | 
	
		| 8 | 
		Yu Qi, Can Li*,Fuxiang Zhang*, et al., Achievement of visible-light-driven Z-scheme overall water splitting using barium-modified Ta3N5 as a H2-evolving photocatalyst. Chemical Science, 2017, 8, 437-443. | 
	
		| 9 | 
		Yu Qi, Fuxiang Zhang* Photocatalytic water splitting for hydrogen production. Acta Chimica Sinica 2022, 80(6): 827-838. | 
	
		| 10 | 
		Hai Zou,# Yu Qi,# Fuxiang Zhang*, et al., Pyrochlore-structural Nd2Ta2O5N2 photocatalyst with absorption edge of over 600 nm for Z-scheme overall water splitting. Chemical Communications 2022, 58, 10719-10722. | 
	
		| 11 | 
		Nengcong Yang, Yu Qi* Fuxiang Zhang*, et al., Understanding the morphology evolution of 1D BiVO4 nanoarrays from nanorods to nanocones with enhanced photocatalytic performance. CrystEngComm 2022, 24, 3297-3306. | 
	
		| 12 | 
		Zhiliang Wang#, Yu Qi#, Can Li* et al., Insight into the charge transfer in particulate Ta3N5 hotoanode with high photoelectrochemical performance. Chemical Science, 2016, 7,  4391-4399. |