Chinese Journal of Catalysis ›› 2019, Vol. 40 ›› Issue (11): 1721-1730.DOI: 10.1016/S1872-2067(19)63345-0
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Nhung N. Duonga,b, Darius Aruhoa, Bin Wanga, Daniel E. Resascoa
Received:
2019-01-10
Revised:
2019-03-07
Online:
2019-11-18
Published:
2019-09-06
Contact:
Bin Wang, Daniel E. Resasco
Supported by:
Nhung N. Duong, Darius Aruho, Bin Wang, Daniel E. Resasco. Hydrodeoxygenation of anisole over different Rh surfaces[J]. Chinese Journal of Catalysis, 2019, 40(11): 1721-1730.
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URL: https://www.cjcatal.com/EN/10.1016/S1872-2067(19)63345-0
[1] D. E. Resasco, B. Wang, D. Sabatini, Nat. Catal., 2018, 1, 731-735. [2] J. A. Herron, T. Vann, N. Duong, D. E. Resasco, S. Crossley, L. L. Lobban, C. T. Maravelias, Energy Technol., 2017, 5, 130-150. [3] D. E. Resasco, S. P. Crossley, Catal. Today, 2015, 257, 185-199. [4] Q. Bu, H. Lei, A. H. Zacher, L. Wang, S. Ren, J. Liang, Y. Wei, Y. Liu, J. Tang, Q. Zhang, R. Ruan, Bioresource Technol., 2012, 124, 470-477. [5] T. Prasomsri, T. Nimmanwudipong, Y. Roman-Leshkov, Energy Environ. Sci., 2013, 6, 1732-1738. [6] Q. H. Tan, G. H. Wang, L. Nie, A. Dinse, C. Buda, J. Shabaker, D. E. Resasco, ACS Catal., 2015, 5, 6271-6283. [7] Q. Tan, G. Wang, A. Long, A. Dinse, C. Buda, J. Shabaker, D. E. Re-sasco, J. Catal, 2017, 347, 102-115. [8] N. Duong, Q. H. Tan, D. E. Resasco, C. R. Chim., 2018, 21, 155-163. [9] F. Yang, D. Liu, Y. Zhao, H. Wang, J. Han, Q. Ge, X. Zhu, ACS Catal., 2018, 8, 1672-1682. [10] D. J. Rensel, S. Rouvimov, M. E. Gin, J. C. Hicks, J. Catal., 2013, 305, 256-263. [11] P. T. M. Do, A. J. Foster, J. Chen, R. F. Lobo, Green Chem., 2012, 14, 1388-1397. [12] K. Lee, G. H. Gu, C. A. Mullen, A. A. Boateng, D. G. Vlachos, ChemSusChem, 2015, 8, 315-322. [13] A. Robinson, G. A. Ferguson, J. R. Gallagher, S. Cheah, G. T. Beck-ham, J. A. Schaidle, J. E. Hensley, J. W. Medlin, ACS Catal., 2016, 6, 4356-4368. [14] A. M. Robinson, L. Mark, M. J. Rasmussen, J. E. Hensley, J. W. Med-lin, J. Phys. Chem. C, 2016, 120, 26824-26833. [15] X. Liu, W. An, Y. Wang, C. H. Turner, D. E. Resasco, Catal. Sci. Technol., 2018, 8, 2146-2158. [16] P. M. de Souza, R. C. Rabelo-Neto, L. E. P. Borges, G. Jacobs, B. H. Davis, D. E. Resasco, F. B. Noronha, ACS Catal., 2017, 7, 2058-2073. [17] P. M. de Souza, L. Nie, L. E. Borges, F. B. Noronha, D. E. Resasco, Catal. Lett., 2014, 144, 2005-2011. [18] M. B. Griffin, G. A. Ferguson, D. A. Ruddy, M. J. Biddy, G. T. Beckham, J. A. Schaidle, ACS Catal., 2016, 6, 2715-2727. [19] V. Jain, Y. Bonita, A. Brown, A. Taconi, J. C. Hicks, N. Rai, Catal. Sci. Technol., 2018, 8, 4083-4096. [20] E. Furimsky, Appl. Catal. A, 2000, 199, 147-190. [21] A. J. R. Hensley, Y. C. Hong, R. Q. Zhang, H. Zhang, J. M. Sun, Y. Wang, J. S. McEwen, ACS Catal., 2014, 4, 3381-3392. [22] C. Zhao, Y. Kou, A. A. Lemonidou, X. B. Li, J. A. Lercher, Angew. Chem. Int. Edit., 2009, 48, 3987-3990. [23] C. Zhao, Y. Z. Yu, A. Jentys, J. A. Lercher, Appl. Catal. B, 2013, 132, 282-292. [24] X. L. Zhu, L. Nie, L. L. Lobban, R. G. Mallinson, D. E. Resasco, Energy Fuels, 2014, 28, 4104-4111. [25] C. Zhao, J. He, A. A. Lemonidou, X. Li, J. A. Lercher, J. Catal., 2011, 280, 8-16. [26] C. Zhao, Y. Kou, A. A. Lemonidou, X. Li, J. A. Lercher, Chem. Com-mun., 2010, 46, 412-414. [27] C. Zhao, J. A. Lercher, ChemCatChem, 2012, 4, 64-68. [28] J. Greeley, J. K. Nørskov, Surf. Sci., 2005, 592, 104-111. [29] R. M. Watwe, R. D. Cortright, J. K. Nørskov, J. A. Dumesic, J. Phys. Chem. B, 2000, 104, 2299-2310. [30] J. Kleis, J. Greeley, N. A. Romero, V. A. Morozov, H. Falsig, A. H. Larsen, J. Lu, J. J. Mortensen, M. Du?ak, K. S. Thygesen, J. K. Nør-skov, K. W. Jacobsen, Catal. Lett., 2011, 141, 1067-1071. [31] M. Mavrikakis, B. Hammer, J. K. Nørskov, Phys. Rev. Lett., 1998, 81, 2819-2822. [32] J. R. Kitchin, J. K. Nørskov, M. A. Barteau, J. G. Chen, Phys. Rev. Lett., 2004, 93, 156801. [33] H. Wang, S. Chen, L. Cao, W. X. Li, J. Lu, X. K. Gu, X. Zheng, H. Pan, J. Zhu, Sci. Adv., 2019, 5, eaat6413. [34] L. Dong, L. L. Yin, Q. Xia, X. Liu, X. Q. Gong, Y. Wang, Catal. Sci. Technol., 2018, 8, 735-745. [35] G. Kresse, J. Hafner, Phys. Rev. B, 1993, 47, 558. [36] G. Kresse, J. Furthmüller, Phys. Rev. B, 1996, 54, 11169. [37] J. P. Perdew, K. Burke, M. Ernzerhof, Phys. Rev. Lett., 1996, 77, 3865-3868. [38] S. Grimme, J. Antony, S. Ehrlich, H. Krieg, J. Chem. Phys., 2010, 132. [39] J. W. Arblaster, Platinum Metals Rev., 1996, 40, 62. [40] G. Henkelman, H. Jónsson, J. Chem. Phys., 2000, 113, 9978-9985. [41] G. Henkelman, B. P. Uberuaga, H. Jonsson, J. Chem. Phys., 2000, 113, 9901-9904. [42] D. Sheppard, G. Henkelman, J. Comput. Chem., 2011, 32, 1769-1771. [43] H. F. J. van't Blik, J. B. A. D. van Zon, T. Huizinga, J. C. Vis, D. C. Koningsberger, R. Prins, J. Phys. Chem., 1983, 87, 2264-2267. [44] D. J. C. Yates, L. L. Murrell, E. B. Prestridge, J. Catal., 1979, 57, 41-63. [45] C. A. Rice, S. D. Worley, C. W. Curtis, J. A. Guin, A. R. Tarrer, J. Chem. Phys., 1981, 74, 6487-6497. [46] G. L. Haller, D. E. Resasco, Adv. Catal., 1989, 36, 173-235. [47] S. Trautmann, M. Baerns, J. Catal., 1994, 150, 335-344. [48] M. Saeys, M. F. Reyniers, G. B. Marin, M. Neurock, J. Phys. Chem. B, 2002, 106, 7489-7498. [49] M. L. Honkela, J. Bjork, M. Persson, Phys. Chem. Chem. Phys., 2012, 14, 5849-5854. [50] R. W. Pasco, P. J. Ficalora, Surf. Sci., 1983, 134, 476-498. |
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