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个人简介

2020年7月至今,西北工业大学,教授 2017年7月至2020年6月,西安交通大学,讲师

研究领域

1. 受阻路易斯酸碱对的构建及应用 2. 双位点多相催化剂 3. 绿色催化转化过程

近期论文

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Yong Zou, Mingkai Zhang, Fangxian Cao, Jiayuan Li, Sai Zhang* and Yongquan Qu*, Single crystal MnOOH nanotubes for selective oxidative coupling of anilines to aromatic zao compounds, J. Mater. Chem. A, 2021, 9, 19692-19697. Sai Zhang#, Zhaoming Xia#, Yong Zou, Mingkai Zhang and Yongquan Qu*, Spatial intimacy of binary active-sites for selective sequential hydrogenation-condensation of nitriles into secondary imines, Nat. Commun., 2021, 12, 3382. Sai Zhang*, Zhaoming Xia, Mingkai Zhang, Yong Zou, Haidong Shen, Jiayuan Li, Xiao Chen and Yongquan Qu*, Boosting selective hydrogenation through hydrogen spillover on supported-metal catalysts at room temperature, Appl. Catal. B-Environ., 2021, 297, 120418. Zechen Liang, Mingkai Zhang, Sai Zhang* and Yongquan Qu*, Electron-Enriched Pd Nanoparticles for Selective Hydrogenation of Halonitrobenzenes to Haloanilines, Catalysts, 2021, 11, 543. Invited paper.TOC.jpg Sai Zhang#, Jie Gan#, Zhaoming Xia, Xiao Chen, Yong Zou, Xuezhi Duan and Yongquan Qu*, Dual-active-sites design of Co@C catalysts for ultrahigh selective hydrogenatoin of N-heteroarenes, Chem, 2020, 6, 2994-3006. S. Zhang#, Z. M. Xia#, Y. Zou, F. X. Cao, Y. X. Liu, Y. Y. Ma, Y. Q. Qu*. Interfacial frustrated Lewis pairs of CeO2 activate CO2 for selective tandem transformation of olefins and CO2 into cyclic carbonates, J. Am. Chem. Soc. 2019, 141, 11353-11357. S. Zhang, C. R. Chang, Z. Q. Huang, J. Li, Z. M. Wu, Y. Y. Ma, Z. Y. Zhang, Y. Wang and Y. Qu*, High catalytic activity and chemoselectivity of sub-nanometric Pd clusters on porous nanorods of CeO2 for hydrogenation of nitroarenes. J. Am. Chem. Soc., 2016, 138, 2629-2638.(ESI高被引论文) S. Zhang#, Z. Q. Huang#, Y. Y. Ma, W. Gao, J. Li, F. X. Cao, L. Li, C. R. Chang*, Y. Qu*. Solid frustrated-Lewis-pair catalysts constructed by regulations on surface defects of porous nanorods of CeO2, Nat. Commun., 2017, 8, 15266. S. Zhang, Y. Ma, H. Zhang, X. Zhou, X. Chen and Y. Qu*, Additive-free, robust and high value-added H2 production from H2O and DMF by dehydrogenation catalyzed by Cu/Cu2O formed in situ. Angew. Chem. Int. Ed. 2017, 56, 8245-8249. S. Zhang, C. R. Chang, Z. Q. Huang, Y. Y. Ma, W. Gao, J. Li and Y. Qu*, Visible-light-activated Suzuki-Miyaura coupling reactions of aryl chlorides over the multifunctional Pd/Au/porous nanorods of CeO2 catalysts. ACS Catal. 2015, 5, 6481-6488. S. Zhang, Z. M. Xia, Y. Y. Ma, J. Li, Y. Q. Qu*. Competitive adsorption on PtCo/CoBOx catalysts enables the selective hydrogen-reductive-imination of nitroarenes with aldehydes into imines. J. Catal. 2019, 374, 72-81. S. Zhang#, Z. Q. Huang#, X. Chen, J. Gan, X. Z. Duan, C. R. Chang*, Y. Q. Qu*. Hydrogen activation enabled by the interfacial frustrated Lewis pairs on cobalt borate nanosheets, J. Catal., 2019, 372,142-150. S. Zhang, Z. M. Xia, T. Ni, Z. Y. Zhang, Y. Y. Ma and Y. Q. Qu*, Strong electronic metal-support interaction of Pt/CeO2 enables efficient and selective hydrogenation of quinolines at room temperature. J. Catal. 2018, 359, 101-111. X. M. Han, X. Chen, Y. Zou, S. Zhang*, Electronic state regulation of supported Pt catalysts dictates selectivity of imines/secondary amines from the cascade transformation of nitroarenes and aldehydes. Appl. Catal. B-Environ. 2019, 118451. X. Chen, H. Zhang, M. K. Zhang, Y. Zou, S. Zhang* and Y. Q. Qu*, Temperature-responsive dissolution/recrystallization of Zn MOF enables the maximum efficiency and recyclability of catalysts, Chem. Common. 2020, 56, 1960-1963. Sai Zhang, Mingkai Zhang and Yongquan Qu*, Solid frustrated Lewis pairs construcuted on CeO2 for small-molecule activation, Acta Phys.-Chim. Sin., 2020, 36, 1911050. S. Zhang, Z. M. Xia, T. Ni, H. Zhang, C. Wu, Y. Qu*. Tuning chemical compositions of bimetallic AuPd catalysts for selective catalytic hydrogenation of halogenated quinolines. J. Mater. Chem. A, 2017, 5, 3260-3266.(hot paper) S. Zhang, X. T. Shen, Z. P. Zheng, Y. Ma and Y. Qu*, 3D graphene/nylon rope as a skeleton for noble metal nanocatalysts for highly efficient heterogeneous continuous-flow reactions. J. Mater. Chem. A, 2015, 3, 1050-10511. S. Zhang, H. Zhang, F. X. Cao, Y. Y. Ma, Y. Q. Qu*. Catalytic behavior of graphene oxides for converting CO2 into cyclic carbonates at one atmospheric pressure, ACS Sustainable Chem. Eng., 2018, 6, 4204-4211 X. Chen, H. Zhang, Z. M. Xia, S. Zhang*, and Y. Y. Ma*. Base-free hydrogen generation from formaldehyde and water catalyzed by copper nanoparticles embedded on carbon sheets. Catal. Sci. Technol. 2019, 9, 783-788.

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