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Gou WY#, Xia ZM#, Xue QY, Ye F, Zhang MK, Si R, Zou Y, Li JY, Dai S, Ma Y*, Johnny C. Ho* and Qu Y*, Highly active and stable amorphous IrOx for acidic oxygen evolution, Nano Energy, 2022, 104, 107960.
Zhao JL#, Tian ZM#*, Zhao SJ#, Feng DY#, Guo ZX, Wen LZ, Zhu YJ, Xu FH, Zhu J, Ma SZ, Hu J, Jiang T, Qu Y*, Chen DF* and Liu L*, Intratumorally catalytic metabolism reprogramming through lactate oxidation for catalytic immunotherapy of tumor, Advanced Science, 2022, 9, 2204808.
Cao FX, Xiao YS, Zhang ZM, Li J, Xia ZM, Hu X, Ma Y* and Qu Y*,Recognitions of oxygen vacancy of CeO2 for CO2 hydrogenation, Journal of Catalysis, 2022, 414, 25-32.
Ma Y#, Tian ZM#, Zhai WF and Qu Y*, Insights on catalytic mechanism of CeO2 as multiple nanozymes, Nano Research, 2022, 15, 10328?10342. (Special Issue: The Nano Research Young Innovators (NR45) Awards, 2022)
Zhang S, Liu YX, Zhang MK, Ma YY, Hu J* and Qu Y*, Sustainable production of hydrogen with high purity from methanol and water at low temperatures, Nature Communications, 2022, 13, 5527.
Zhai WF#, Ma Y#, Chen D, Ho JC*, Dai ZF* and Qu Y*, Recent progress on the long-term stability of hydrogen evolution reaction electrocatalysts, InfoMat, 2022, 4, e12357.
Zou Y#, Zhang MK#, Liu YX, Ma Y, Zhang S* and Qu Y*, Highly selective transfer hydrogenation of furfural into furfuryl alcohol by interfacial frustrated Lewis pairs on CeO2, Journal of Catalysis, 2022, 410, 54-62.
Li J#, Tan Y#, Zhang MK#, Zhang S, Ma Y*, Hu J* and Qu Y*, Boosting electrocatalytic activity of Ru for acidic hydrogen evolution through hydrogen spillover strategy, ACS Energy Letters, 2022, 7, 1330-1337.
Tian ZM#, Zhao JL#, Zhao SJ#, Li HC, Guo ZX, Liang ZC, Li JY, Qu Y* Chen DF* and Liu L*, Phytic acid-modified CeO2 as Ca2+ inhibitor for a security reversal of tumor drug resistance, Nano Research, 2022, 15, 4334?4343
Zhang S.; Xia Z.M.; Zou Y.; Zhang M.K.; Qu Y.*, Spatial intimacy of binary active-sites for selective sequential hydrogenation-condensation of nitriles into secondary imines, Nature Communications, 2021, 12: 3382.
Li J.Y.; Hu J.*; Zhang M.K.; Gou W.Y.; Zhang S.; Chen Z.; Qu Y.*,; Ma Y.Y.*, A fundamental viewpoint on the hydrogen spillover phenomenon of electrocatalytic hydrogen evolution, Nature Communications, 2021, 12: 3502.
Zhang S.*; Xia Z.M.; Zhang M.K.; Zou Y.; Shen H.D.; Li J.Y.; Chen. X.; Qu Y.*, Boosting selective hydrogenation through hydrogen spillover on supported-metal catalysts at room temperature, Applied Catalysis B: Environmental, 2021, 297, 120418.
Li JY#, Xia ZM#, Xue QY, Zhang MK, Zhang S, Xiao H, Ma Y* and Qu Y*, Insights into the interfacial Lewis acid–base pairs in CeO2-loaded CoS2 electrocatalysts for alkaline hydrogen evolution, Small, 2021, 17, 2103018.
Tian Z.M.;# Liu H.B.;# Guo Z.X.; Gou W.Y.; Liang Z.C.; Qu Y.*; Han L.L.* and Liu L.*, A pH-responsive polymer-CeO2 hybrid to catalytically generate oxidative stress for tumor therapy, Small, 2020, 16, 2004654.
Zhang S.;# Gan J.;# Xia Z.M.; Zhang M.K.; Chen X.; Zou Y.; Duan X.Z.* and Qu Y.* Dual-active-sites design of Co@C catalysts for ultrahigh selective hydrogenation of N-heteroarenes, Chem, 2020, 6, 2994-3006.
Zhang X.Q., Zhou D.; Wang X.J.; Zhou J.; Li J.F.; Zhang M.K.; Shen Y.H.; Chu H.B.* and Qu Y.* Overcoming the deactivation of Pt/CNT by introducing CeO2 for selective base-free glycerol-to-glyceric acid oxidation, ACS Catal., 2020, 10, 3832-3837.
Tian Z.; Ma Y.; Yao T.; Zhang S.; Li X.; Xu D.; Xu Y.; Wang B.; Qu X. and Qu Y.* Photoactivity of CeO2 for repair of Ultraviolet-induced DNA damage, Nano Lett., 2019, 19, 8270-8277.
Ma Y.; Zhang S.; Chang C.; Huang Z.; Ho J. C. and Qu Y.* Semi-solid and solid frustrated Lewis pair catalysts. Chemical Society Reviews, 2018, 47, 5541-5553.
Ma Y.; Gao W.; Zhang Z.; Zhang S.; Tian Z. Liu Y.; Ho J. C. and Qu Y.* Surface regulations of nanoceria and its applications in heterogeneous catalysis. Surface Science Reports, 2018, 73, 1-36.
Gao W.; Xia Z. M.; Cao F.; Ho J. C.*; Jiang Z.* and Qu Y.* Comprehensive understanding of the spatial configurations of CeO2 in NiO for electrocatalytic oxygen evolution reaction: embedded or surface-loaded. Advanced Functional Materials, 2018, 28, 1706056.