[1] S. Nishimura, Handbook of heterogeneous Catalytic Hydrogenation for Organic Synthesis, Wiley, New York, 2001.
[2] P. A. Dub, T. Ikariya, ACS Catal., 2012, 2, 1718-1741.
[3] J. Pritchard, G. A. Filonenko, R. van Putten, E. J. M. Hensen, E. A. Pidko, Chem. Soc. Rev., 2015, 44, 3808-3833.
[4] F. M. A. Geilen, B. Engendahl, M. Hölscher, J. Klankermayer, W. Leitner, J. Am. Chem. Soc., 2011, 133, 14349-14358.
[5] T. Stein, M. Meuresch, D. Limper, M. Schmitz, M. Hölscher, J. Coet-zee, D. J. Cole-Hamilton, J. Klankermayer, W. Leitner, J. Am. Chem. Soc., 2014, 136, 13217-13225.
[6] X. J. Cui, Y. H. Li, C. Topf, K. Junge, M. Beller, Angew. Chem. Int. Ed., 2015, 54, 10596-10599.
[7] T. P. Brewster, A. J. M. Miller, D. M. Heinekey, K. I. Goldberg, J. Am. Chem. Soc., 2013, 135, 16022-16025.
[8] T. J. Korstanje, J. I. van der Vlugt, C. J. Elsevier, B. de Bruin, Science, 2015, 350, 298-302.
[9] J. E. Carnahan, T. A. Ford, W. F. Gresham, W. E. Grisby, G. F. Hager, J. Am. Chem. Soc., 1955, 77, 3766-3768.
[10] L. Corbel-Demailly, B. K. Ly, D. P. Minh, B. Tapin, C. Especel, F. Epron, A. Cabiac, E. Guillon, M. Besson, C. Pinel, ChemSusChem, 2013, 6, 2388-2395.
[11] J. M. Lee, P. P. Upare, J. S. Chang, Y. K. Hwang, J. Ho Lee, D. W. Hwang, D. Y. Hong, S. H. Lee, M. G. Jeong, Y. D. Kim, Y. U. Kwon, ChemSusChem, 2014, 7, 2998-3001.
[12] H. G. Manyar, C. Paun, R. Pilus, D. W. Rooney, J. M. Thompson, C. Hardacre, Chem. Commun., 2010, 46, 6279-6281.
[13] B. Rozmyslowicz, A. Kirilin, A. Aho, H. Manyar, C. Hardacre, J. Wärnå, T. Salmi, D. Y. Murzin, J. Catal., 2015, 328, 197-207.
[14] T. Turek, D. L. Trimm, N. W. Cant, Catal. Rev. Sci. Eng., 1994, 36, 645-683.
[15] B. Chen, U. Dingerdissen, J. G. E. Krauter, H. G. J. L. Rotgerink, K. Möbus, D. J. Ostgard, P. Panster, T. H. Riermeier, S. Seebald, T. Tacke, H. Trauthwein, Appl. Catal. A, 2005, 280, 17-46.
[16] G. Kresse, J. Furthmüller, Comp. Mater. Sci., 1996, 6, 15-50.
[17] G. Kresse, J. Hafner, Phys. Rev. B, 1994, 49, 14251-14269.
[18] G. Henkelman, H. Jónsson, J. Chem. Phys., 1999, 111, 7010-7022.
[19] C. M. Wang, Y. D. Wang, Y. J. Du, G. Yang, Z. K. Xie, Catal. Sci. Tech-nol., 2015, 5, 4354-4364.
[20] B. J. Morgan, G. W. Watson, Surf. Sci., 2007, 601, 5034-5041.
[21] D. Wang, J. Jiang, H. F. Wang, P. Hu, ACS Catal., 2016, 6, 733-741.
[22] I. V. Solovyev, A. I. Liechtenstein, K. Terakura, Phys. Rev. Lett., 1998, 80, 5758-5761.
[23] C. Rödl, F. Fuchs, J. Furthmüller, F. Bechstedt, Phys. Rev. B, 2009, 79, 235114/1-235114/8.
[24] B. Wojcik, H. Adkins, J. Am. Chem. Soc., 1933, 55, 1293-1294.
[25] B. X. Peng, X. G. Yuan, C. Zhao, J. A. Lercher, J. Am. Chem. Soc., 2012, 134, 9400-9405.
[26] E. I. Gürbüz, D. D. Hibbitts, E. Iglesia, J. Am. Chem. Soc., 2015, 137, 11984-11995.
[27] L. Di, S. Yao, M. Li, G. Wu, W. Dai, G. Wang, L. Li, N. Guan, ACS Catal., 2015, 5, 7199-7207.
[28] R. Bechara, D. Balloy, J. Y. Dauphin, J. Grimblot, Chem. Mater., 1999, 11, 1703-1711.
[29] Y. Q. Ji, Z. Zhao, A. J. Duan, G. Y. Jiang, J. Liu, J. Phys. Chem. C, 2009, 113, 7186-7199.
[30] The very small hydrogen consumption at 523-673 K should be due to the reduction of trace Co3+ formed during sample pre-treatment in argon containing trace oxygen in H2-TPR experiment. The different temperature ranges of Co2+ reduction to Co0 in Co3O4 and Co3O4-573 are originated from their different textural properties.
[31] B. V. Crist, Handbook of Monochromatic XPS Spectra, Wiley, New York, 2011.
[32] X. W. Xie, Y. Li, Z. Q. Liu, M. Haruta, W. J. Shen, Nature, 2009, 458, 746-749.
[33] C. Z. Yuan, L. Yang, L. R. Hou, L. F. Shen, X. G. Zhang, X. W. Lou, Energy Environ. Sci., 2012, 5, 7883-7887.
[34] M. R. Ward, E. D. Boyes, P. L. Gai, ChemCatChem, 2013, 5, 2655-2661.
[35] M. Zhang, M. de Respinis, H. Frei, Nat. Chem., 2014, 6, 362-367.
[36] S. Gao, Y. Lin, X. C. Jiao, Y. F. Sun, Q. Q. Luo, W. H. Zhang, D. Q. Li, J. L. Yang, Y. Xie, Nature, 2016, 529, 68-71.
[37] R. V. Jagadeesh, T. Stemmler, A. E. Surkus, M. Bauer, M. M. Pohl, J. Radnik, K. Junge, H. Junge, A. Brückner, M. Beller, M. Bauer, Nat. Protocol., 2015, 10, 916-926.
[38] T. Schwob, R. Kempe, Angew. Chem. Int. Ed., 2016, 55, 15175-15179.
[39] C. P. Plaisance, R. A. van Santen, J. Am. Chem. Soc., 2015, 137, 14660-14672.
[40] L. C. Liu, P. Concepción, A. Corma, J. Catal., 2016, 340, 1-9. |