Sonderforschungsbereich 546

"Struktur, Dynamik und Reaktivität von Übergangsmetalloxid-Aggregaten"


Publikationen im TP B2:


Berichtzeitraum 2008/2 - 20011/1

1.a) Referierte Veröffentlichungen in wissenschaftlichen Zeitschriften

[SFH07]
O. Schwarz, B. Frank, C. Hess, and R. Schomäcker, Characterisation and catalytic testing of VOx/Al2O3 catalysts for microstructured reactors
Catal. Commun. 9 (2008) 229 - 233.
[CZH07]
X.W. Chen, Z. Zhu, M. Hävecker, D. S. Su, and R. Schlögl, Carbon nanotubeinduced preparation of vanadium oxide nanorods: Application as a catalyst for the partial oxidation of n-butane
Mater. Res. Bull. 42 (2007) 354 - 361.
[H07]
C. Hess, Direct correlation of the dispersion, and structure in vanadium oxide supported on silica SBA-15
J. Catal. 248 (2007) 120 - 123.
[VHJ07]
T.V. Venkov, C. Hess, and F.C. Jentoft, Red-ox properties of vanadium ions in SBA-15 supported vanadium oxide: an FTIR spectroscopic study
Langmuir 23 (2007) 1768 - 1777.
[HTH07]
C. Hess, G. Tzolova-Müller, and R. Herbert, The influence of water on the dispersion of vanadia supported on silica SBA-15: A combined XPS and Raman study
J. Phys. Chem. C 111 (2007) 9471 - 9479.
[CSH06]
X. Chen, M. Steinhart, C. Hess, and U. Gösele, Ordered arrays of mesoporous microrods from recyclable macroporous silicon templates
Adv. Mater. 18 (2006) 2153 - 2156.
[HSF06]
D. Habel, J.B. Stelzer, E. Feike, C. Schröder, A. Hösch, C. Hess, A. Knop-Gericke, J. Caro, and H. Schubert, Phase development in the catalytic system V2O5/TiO2 under oxidizing conditions
J. Eur. Ceram. Soc. 26 (2006) 3287 - 3294.
[HS06]
C. Hess, and R. Schlögl, The influence of water on the dispersion of vanadia supported on silica SBA-15
Chem. Phys. Lett. 432 (2006) 139 - 145.
[H06]
C. Hess, Characterization of the synthesis and reactivity behavior of nanostructured vanadia model catalysts using XPS and vibrational spectroscopy
Surf. Sci. 600 (2006) 3695 - 3701.
[HWS06]
C. Hess, U. Wild, and R. Schlögl, The mechanism for the controlled synthesis of highly dispersed vanadia supported on silica SBA-15
Microp. Mesop. Mater. 95 (2006) 339 - 349.
[HLA06]
C. Hess, M.H. Looi, S.B. Abd Hamid, and R. Schlögl, Importance of nanostructured vanadia for selective oxidation of propane to acrylic acid
Chem. Commun. (2006) 451 - 453.
[KCB05]
E.V. Kondratenko, M. Cherian, M. Baerns, S. Su, R. Schlögl, X. Wang, and I.E. Wachs, Oxidative dehydrogenation of propane over V/MCM-41 catalysts: comparison of O2 and N2O as oxidants
J. Catal. 234 (2005) 131 - 142.
[HDH05]
C. Hess, I.J. Drake, J.D. Hoefelmeyer, T.D. Tilley, and A.T. Bell, Partial oxidation of methanol over highly dispersed vanadia supported on silica SBA-15
Catal. Lett. 105 (2005) 1-8.
[HPW05]
M. Hävecker, N. Pinna, K. Weiß, H. Sack-Kongehl, R.E. Jentoft, D. Wang, S. Swoboda, U. Wild, M. Niederberger, J. Urban, D.S. Su, and R. Schlögl, Synthesis and functional verification of the unsupported active phase of VxOy catalysts for partial oxidation of n butane
J. Catal. 236 (2005) 221 - 232.
 

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