journal article Nov 01, 2016

Effect of the composition of the reaction atmosphere on the thermal stability of highly dispersed gold particles on an oxide support (Au/Al2O3 system)

View at Publisher Save 10.1134/s002315841606015x
Topics

No keywords indexed for this article. Browse by subject →

References
68
[1]
Haruta, M., Catal. Today, 1997, vol. 36, p. 153. 10.1016/s0920-5861(96)00208-8
[2]
Haruta, M. and Date, M., Appl. Catal., A, 2001, vol. 222, p. 427. 10.1016/s0926-860x(01)00847-x
[3]
Choudhary, T.V. and Goodman, D.W., Top. Catal., 2002, vol. 21, p. 25. 10.1023/a:1020595713329
[4]
Delidovich, I.V., Moroz, B.L., Taran, O.P., Gromov, N.V., Pyrjaev, P.A., Prosvirin, I.P., Bukhtiyarov, V.I., and Parmon, V.N., Chem. Eng. J., 2013, vol. 223, p. 921. 10.1016/j.cej.2012.11.073
[5]
Boccuzzi, F., Chiorino, A., Manzoli, M., Lu, P., Akita, T., Ichikawa, S., and Haruta, M., J. Catal., 2001, vol. 202, p. 256. 10.1006/jcat.2001.3290
[6]
Widmann, D. and Behm, R.J., Angew. Chem., Int. Ed. Engl., 2011, vol. 50, p. 10241. 10.1002/anie.201102062
[7]
Gavril, D., Catal. Today, 2015, vol. 244, p. 36. 10.1016/j.cattod.2014.08.022
[8]
Akita, T., Maeda, Y., and Kohyama, M., J. Catal., 2015, vol. 324, p. 127. 10.1016/j.jcat.2015.02.006
[9]
Konova, P., Naydenov, A., Venkov, C., Mehandjiev, D., Andreeva, D., and Tabakova, T., J. Mol. Catal. A: Chem., 2004, vol. 213, p. 235. 10.1016/j.molcata.2003.12.021
[10]
Ho, K.Y. and Yeung, K.L., J. Catal., 2006, vol. 242, p. 131. 10.1016/j.jcat.2006.06.005
[11]
Veith, G.M., Lupini, A.R., Rashkeev, S., Pennycook, S.J., Mullins, D.R., Schwartz, V., Bridges, C.A., and Dudney, N.J., J. Catal., 2009, vol. 262, p. 92. 10.1016/j.jcat.2008.12.005
[12]
Ta, N., Liu, J., Chenna, S., Crozier, P.A., Li, Y., Chen, A., and Shen, W., J. Am. Chem. Soc., 2012, vol. 134, p. 20585. 10.1021/ja310341j
[13]
Golunski, S., Platinum Met. Rev., 2007, vol. 51, p. 162. 10.1595/147106707x205857
[14]
Haruta, M., CATTECH, 2002, vol. 6, p. 102. 10.1023/a:1020181423055
[15]
Wang, J., Lu, A.-H., Li, M., Zhang, W., Chen, Y.-S., Tian, D.-X., and Li, W.-C., ACS Nano, 2013, vol. 7, p. 4902. 10.1021/nn401446p
[16]
Wang, L.-C., He, L., Liu, Y.-M., Cao, Y., He, H.-Y., Fan, K.-N., and Zhuang, J.-H., J. Catal., 2009, vol. 264, p. 145. 10.1016/j.jcat.2009.04.006
[17]
Yan, Z., Chinta, S., Mohamed, A.A., Fackler, J.P., and Goodman, D.W., J. Am. Chem. Soc., 2005, vol. 127, p. 1604. 10.1021/ja043652m
[18]
Pan, Y., Gao, Y., Kong, D., Wang, G., Hou, J., Hu, S., Pan, H., and Zhu, J., Langmuir, 2012, vol. 28, p. 6045. 10.1021/la205104q
[19]
Kolmakov, A. and Goodman, D.W., Catal. Lett., 2000, vol. 70, p. 93. 10.1023/a:1018872931114
[20]
Structure–reactivity correlations for oxide-supported metal catalysts: new perspectives from STM

Xiaofeng Lai, D.Wayne Goodman

Journal of Molecular Catalysis A: Chemical 2000 10.1016/s1381-1169(00)00320-4
[21]
Veith, G.M., Lupini, A.R., Pennycook, S.J., Ownby, G.W., and Dudney, N.J., J. Catal., 2005, vol. 231, p. 151. 10.1016/j.jcat.2004.12.008
[22]
Smirnov, M.Yu., Vovk, E.I., Kalinkin, A.V., Gerasimov, E.Yu., and Bukhtiyarov, V.I., Russ. Chem. Bull., 2014, vol. 63, no. 12, p. 2733. 10.1007/s11172-014-0807-0
[23]
Bethke, G.K. and Kung, H.H., Appl. Catal., A, 2000, vols. 194–195, p. 43. 10.1016/s0926-860x(99)00352-x
[24]
Moroz, B.L., Pyrjaev, P.A., Zaikovskii, V.I., and Bukhtiyarov, V.I., Catal. Today, 2009, vol. 144, p. 292. 10.1016/j.cattod.2008.10.038
[25]
Chen, B., Zhu, X., Crocker, M., Wang, Y., and Shi, C., Catal. Commun., 2013, vol. 42, p. 93. 10.1016/j.catcom.2013.08.008
[26]
Nikolaev, S.A., Chistyakov, A.V., Chudakova, M.V., Yakimchuk, E.P., Kriventsov, V.V., and Tsodikov, M.V., J. Catal., 2013, vol. 297, p. 296. 10.1016/j.jcat.2012.10.025
[27]
Kipnis, M.A., Volnina, E.A., Ezhov, A.A., and Ivanov, V.K., Kinet. Catal., 2013, vol. 54, p. 358. 10.1134/s0023158413030075
[28]
Lin, C., Tao, K., Hua, D., Ma, Z., and Zhou, S., Molecules, 2013, vol. 18, p. 12609. 10.3390/molecules181012609
[29]
Moulder, J.F., Stickle, W.F., Sobol, P.E., and Bomben, K.D., Handbook of X-Ray Photoelectron Spectroscopy, Eden Prairie, Minn. PerkinElmer, 1992.
[30]
Smirnov, M.Yu., Kalinkin, A.V., Pashis, A.V., Sorokin, A.M., Noskov, A.S., Kharas, K.C., and Bukhtiyarov, V.I., J. Phys. Chem. B, 2005, vol. 109, p. 11712. 10.1021/jp0508249
[31]
Smirnov, M.Yu., Kalinkin, A.V., Pashis, A.V., Prosvirin, I.P., and Bukhtiyarov, V.I., J. Phys. Chem. C, 2014, vol. 118, p. 22120. 10.1021/jp5069126
[32]
Kalinkin, A.V., Savchenko, V.I., and Pashis, A.V., Catal. Lett., 1999, vol. 59, p. 115. 10.1023/a:1019012303143
[33]
Campbell, C.T., Surf. Sci. Rep., 1997, vol. 27, p. 1. 10.1016/s0167-5729(96)00011-8
[34]
Baumer, M. and Freund, H.-J., Prog. Surf. Sci., 1999, vol. 61, p. 127. 10.1016/s0079-6816(99)00012-x
[35]
Mitchell, C.E.J., Howard, A., Carney, M., and Egdell, R.G., Surf. Sci., 2001, vol. 490, p. 196. 10.1016/s0039-6028(01)01333-4
[36]
Zhang, L., Persaud, R., and Madey, T.E., Phys. Rev. B: Condens. Matter, 1997, vol. 56, p. 10549. 10.1103/physrevb.56.10549
[37]
Luo, K., Kim, D.Y., and Goodman, D.W., J. Mol. Catal. A: Chem., 2001, vol. 167, p. 191. 10.1016/s1381-1169(00)00506-9
[38]
Kitchin, J.R., Barteau, M.A., and Chen, J.G., Surf. Sci., 2003, vol. 526, p. 323. 10.1016/s0039-6028(02)02679-1
[39]
Lai, X., Clair, T.P.S., Valden, M., and Goodman, D.W., Prog. Surf. Sci., 1998, vol. 59, p. 25. 10.1016/s0079-6816(98)00034-3
[40]
Parker, S.C., Grant, A.W., Bondzie, V.A., and Campbell, C.T., Surf. Sci., 1999, vol. 441, p. 10. 10.1016/s0039-6028(99)00753-0
[41]
Spiridis, N., Haber, J., and Korecki, J., Vacuum, 2001, vol. 63, p. 99. 10.1016/s0042-207x(01)00176-2
[42]
Dulub, O., Hebenstreit, W., and Diebold, U., Phys. Rev. Lett., 2000, vol. 84, p. 3646. 10.1103/physrevlett.84.3646
[43]
Shaikhutdinov, Sh.K., Meyer, R., Naschitzki, M., Baumer, M., and Freund, H.-J., Catal. Lett., 2003, vol. 86, p. 211. 10.1023/a:1022616102162
[44]
Gao, Y., Liang, Y., and Chambers, S.A., Surf. Sci., 1996, vol. 365, p. 638. 10.1016/0039-6028(96)00763-7
[45]
Fu, Q., Wagner, T., Olliges, S., and Carstanjen, H.-D., J. Phys. Chem. B, 2005, vol. 109, p. 944. 10.1021/jp046091u
[46]
Yan, W., Mahurin, S.M., Pan, Z., Overbury, S.H., and Dai, S., J. Am. Chem. Soc., 2005, vol. 127, p. 10480. 10.1021/ja053191k
[47]
Meyer, R., Lemire, C., Shaikhutdinov, S.K., and Freund, H.-J., Gold Bull., 2004, vol. 37, p. 72. 10.1007/bf03215519
[48]
Nefedov, V.I., Rentgenoelektronnaya spektroskopiya khimicheskikh soedinenii: Spravochnik (X-Ray Electron Spectroscopy of Chemical Compounds), Moscow Khimiya, 1984.
[49]
Brand, J., Snijders, P.C., Sloof, W.G., Terryn, H., and de Wit, J.H.W., J. Phys. Chem. B, 2004, vol. 108, p. 6017. 10.1021/jp037877f
[50]
Mason, M.G., Phys. Rev. B: Condens. Matter, 183, vol. 27, p. 748. 10.1103/physrevb.27.748

Showing 50 of 68 references

Metrics
4
Citations
68
References
Details
Published
Nov 01, 2016
Vol/Issue
57(6)
Pages
831-839
License
View
Cite This Article
M. Yu. Smirnov, E. I. Vovk, A. V. Kalinkin, et al. (2016). Effect of the composition of the reaction atmosphere on the thermal stability of highly dispersed gold particles on an oxide support (Au/Al2O3 system). Kinetics and Catalysis, 57(6), 831-839. https://doi.org/10.1134/s002315841606015x
Related

You May Also Like