相关文献:
1. Selective conversion of syngas to light olefins, Feng Jiao, Jinjing Li, Xiulian Pan*, Jianping Xiao, Haobo Li, Hao Ma, Mingming Wei, Yang Pan, Zhongyue Zhou, Mingrun Li, Shu Miao, Jian Li, Yifeng Zhu, Dong Xiao, Ting He, Junhao Yang, Fei Qi, Qiang Fu, Xinhe Bao*, Science, 351(2016) (6277) 1065-1068
2. Direct, Non-Oxidative Conversion of Methane to Ethylene, Aromatics, and Hydrogen, Xiaoguang Guo, Guangzong Fang, Gang Li, Hao Ma, Hongjun Fan, Liang Yu, Chao Ma, Xing Wu, Dehui Deng, Mingming Wei, Dali Tan, Rui Si, Shuo Zhang, Jianqi Li,Litao Sun, Zichao Tang, Xiulian Pan, Xinhe Bao*, Science, 344(2014) 616-619
3. Interface-Confined Ferrous Centers for Catalytic Oxidation, Qiang Fu, WeiXue Li, Yunxi Yao, Hongyan Liu, HaiYan Su, Ding Ma, Xiangkui Gu, Limin Chen, Zhen Wang, Hui Zhang, Bing Wang, Xinhe Bao*, Science, 328(2010) 1141-1144
4. Catalysis with two-dimensional materials and their heterostructures, Dehui Deng, K. S. Novoselov*, Qiang Fu, Nanfeng Zheng, Zhongqun Tian*, Xinhe Bao*, Nature Nanotechnology, 11(2016) 218–230
5. Enhanced ethanol production inside carbon-nanotube reactors containing catalytic particles, Xiulian Pan, Zhongli Fan, Wei Chen, Yunjie Ding, Hongyuan Luo, Xinhe Bao*, Nature Materials, 6(2007)507-511
6. Silicon carbide-derived carbon nanocomposite as a substitute for mercury in the catalytic hydro-chlorination of acetylene, Xingyun Li, Xiulian Pan*, Liang Yu, Pengju Ren, Xing Wu, Litao Sun, Feng Jiao, Xinhe Bao*, Nature Communications, 5(2014) 1-7
7. Interface-confined oxide nanostructures for catalytic oxidation reactions, Qiang Fu*, Fan Yang, Xinhe Bao*, Accounts of Chemical Research, 46(2013) (8) 1692-1701
8. The effects of confinement inside carbon nanotubes on catalysis, Xiulian Pan*, Xinhe Bao*, Accounts of Chemical Research, 44(2011) (8) 553-562
9. Na Li, Feng Jiao, Xiulian Pan*, Yuxiang Chen, Jingyao Feng, Gen Li, Xinhe Bao*, High-Quality Gasoline Directly from Syngas by Dual Metal Oxide–Zeolite (OX-ZEO) Catalysis, Angew. Chem.-Int. Edit., 58(2019)7400 –7404
10. Feng Jiao, Xiulian Pan*, Ke Gong, Yuxiang Chen, Gen Li, Xinhe Bao*, Shape-Selective Zeolites Promote Ethylene Formation from Syngas via, Angew. Chem.-Int. Edit., 57(2018)4692 –4696
论文著作:
1. F. Jiao, B. Bai, G. Li, X. L. Pan*, Y. H. Ye, S. C. Qu, C. Q. Xu, J. P. Xiao, Z. H. Jia, W. Liu, T. Peng, Y. L. Ding, C. Liu, J. J. Li, X. H. Bao*, Disentangling the activity-selectivity trade-off in catalytic conversion of syngas to light olefins, Science, 2023, 380, 727-730.
2. F. Jiao, J. J. Li, X. L. Pan*, J. P. Xiao, H. B. Li, H. Ma, M. M. Wei, Y. Pan, Z. Y. Zhou, M. R. Li, S. Miao, J. Li, Y. F. Zhu, D. Xiao, T. He, J. H. Yang, F. Qi, Q. Fu, X. H. Bao*, Selective conversion of syngas to light olefins, Science, 2016, 351, 1065-1068.
3. X. G. Guo, G. Z. Fang, G. Li, H. Ma, H. J. Fan, L. Yu, C. Ma, X. Wu, D. H. Deng, M. M. Wei, D. L. Tan, R. Si, S. Zhang, J. Q. Li, L. T. Sun, Z. C. Tang, X. L. Pan, X. H. Bao*, Direct, nonoxidative conversion of methane to ethylene, aromatics, and hydrogen, Science, 2014, 344, 616-619.
4. Q. Fu, W.-X. Li, Y. X. Yao, H. Y. Liu, H.-Y. Su, D. Ma, X.-K. Gu, L. M. Chen, Z. Wang, H. Zhang, B. Wang, X. H. Bao*, Interface-confined ferrous centers for catalytic oxidation, Science, 2010, 328, 1141-1144.
5. P. F. Wei, D. F. Gao, T. F. Liu, H. F. Li, J. Q. Sang, C. Wang, R. Cai, G. X. Wang*, X. H. Bao*, Coverage-driven selectivity switch from ethylene to acetate in high-rate CO2/CO electrolysis, Nature Nanotechnology, 2023, 18, 299-306.
6. D. H. Deng, K. S. Novoselov*, Q. Fu, N. F. Zheng, Z. Q. Tian*, X. H. Bao*, Catalysis with two-dimensional materials and their heterostructures, Nature Nanotechnology, 2016, 11, 218-230.
7. X. L. Pan, Z. L. Fan, W. Chen, Y. J. Ding, H. Y. Luo, X. H. Bao*, Enhanced ethanol production inside carbon-nanotube reactors containing catalytic particles, Nature Materials, 2007, 6, 507-511.
8. H. Xin, R. T. Li, L. Lin, R. T. Mu, M. R. Li, D. Li*, Q. Fu*, X. H. Bao*, Reverse water gas-shift reaction product driven dynamic activation of molybdenum nitride catalyst surface, Nature Communications, 2024, 15: 3100.
9. C. S. Yang, S. C. Ma*, Y. M. Liu, L. H. Wang, D. S. Yuan, W.-P. Shao, L. J. Zhang, F. Yang, T. J. Lin, H. X. Ding, H. Y. He, Z.-P. Liu, Y. Cao, Y. F. Zhu*, X. H. Bao*, Homolytic H2 dissociation for enhanced hydrogenation catalysis on oxides, Nature Communications, 2024, 15: 540.
10. Y. X. Chen, S. B. Han, X. L. Pan*, F. Jiao, W. Liu, Y. Pan, X. H. Bao*, Visualization of the active sites of zinc-chromium oxides and the CO/H2 activation mechanism in direct syngas conversion, Journal of the American Chemical Society, 2024, 146, 1887-1893.
11. J. Y. Wang, R. T. Li, G. H. Zhang, C. Dong, Y. M. Fan, S. L. Yang, M. S. Chen, X. W. Guo, R. T. Mu, Y. X. Ning, M. R. Li, Q. Fu*, X. H. Bao*, Confinement-induced indium oxide nanolayers formed on oxide support for enhanced CO2 hydrogenation reaction, Journal of the American Chemical Society, 2024, 146, 5523-5531.
12. J. Q. Sang, T. F. Liu, P. F. Wei, H. F. Li, C. H. Liu, Y. Wang, Y. W. Rong, Q. Wang, G. X. Wang*, X. H. Bao*, Grain boundary generation via steering CuxP2Ox+5 precursor composition enhances CO electrolysis, Energy & Environmental Science, 2024, 17, 3594-3603.
13. R. T. Li, R. T. Mu, K. Li, Y. M. Fan, C. H. Liu, Y. X. Ning, M. R. Li, Q. Fu*, X. H. Bao*, Dynamically confined active silver nanoclusters with ultrawide operating temperature window in CO oxidation, Angewandte Chemie International Edition, 2024, 63, e202416852.
14. X. Z. Du, R. T. Li, H. Xin, Y. M. Fan, C. X. Liu, X. H. Feng, J. Y. Wang, C. Dong, C. Wang, D. Li, Q. Fu*, X. H. Bao*, In-situ dynamic carburization of Mo oxide with unprecedented high CO formation rate in reverse water-gas shift reaction, Angewandte Chemie International Edition, 2024, 63, e202411761.
15. X. Huang, D. Eggart, G. Q. Qin, B. B. Sarma, A. Gaur, J. Z. Yang, Y. Pan, M. R. Li, J. Q. Hao, H. F. Yu, A. Zimina, X. G. Guo, J. P. Xiao, J.-D. Grunwaldt*, X. L. Pan*, X. H. Bao*, Methyl radical chemistry in non-oxidative methane activation over metal single sites, Nature Communications, 2023, 14: 5716.
16. C. Dong, R. T. Mu, R. T. Li, J. Y. Wang, T. Y. Song, Z. P. Qu, Q. Fu*, X. H. Bao*, Disentangling local interfacial confinement and remote spillover effects in oxide-oxide interactions, Journal of the American Chemical Society, 2023, 145, 17056-17065.
17. H. F. Li, H. B. Li, P. F. Wei, Y. Wang, Y. P. Zang, D. F. Gao*, G. X. Wang*, X. H. Bao*, Tailoring acidic microenvironments for carbon-efficient CO2 electrolysis over a Ni-N-C catalyst in a membrane electrode assembly electrolyzer, Energy & Environmental Science, 2023, 16, 1502-1510.
18. Y. X. Shen, T. F. Liu, R. T. Li, H. F. Lv*, N. Ta, X. M. Zhang, Y. F. Song, Q. X. Liu, W. C. Feng, G. X. Wang*, X. H. Bao*, In situ electrochemical reconstruction of Sr2Fe1.45Ir0.05Mo0.5O6-δ perovskite cathode for CO2 electrolysis in solid oxide electrolysis cells, National Science Review, 2023, 10: nwad078
19. N. Li, Y. F. Zhu, F. Jiao, X. L. Pan*, Q. K. Jiang, J. Cai, Y. F. Li, W. Tong, C. Q. Xu, S. C. Qu, B. Bai, D. Y. Miao, Z. Liu, X. H. Bao*, Steering the reaction pathway of syngas-to-light olefins with coordination unsaturated sites of ZnGaOx spinel, Nature Communications, 2022, 13: 2742.
20. H. Xin, L. Lin, R. T. Li, D. Li, T. Y. Song, R. T. Mu, Q. Fu*, X. H. Bao*, Overturning CO2 hydrogenation selectivity with high activity via reaction-induced strong metal–support interactions, Journal of the American Chemical Society, 2022, 144, 4874-4882.