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Lupe [1]

Polar or not polar? The interplay between reconstruction, Sr enrichment, and reduction at the La0.75Sr0.25MnO3(001) surface [2]

F. Hess and B. Yildiz. Phys. Rev. Mater. 4 (2020) 015801.
10.1103/PhysRevMaterials.4.015801 [3]

Lupe [4]

Catalytic Stability Studies Employing Dedicated Model Catalysts [5]

F. Hess, B.M. Smarsly, and H. Over. Acc. Chem. Res. xx (2020) xxxx.
10.1021/acs.accounts.9b00467 [6]

Lupe [7]

Electrochemical polarization dependence of the elastic and electrostatic driving forces to aliovalent dopant segregation on LaMnO3 [8]

D. Kim, R. Bliem, F. Hess, J.-J. Gallet, and B. Yildiz. J. Am. Chem. Soc. xx (2020) xxxx.
10.1021/jacs.9b13040 [9]


Lupe [10]

Efficient implementation of Cluster Expansion models in surface Kinetic Monte Carlo simulations with lateral interactions: Subtraction Schemes, Supersites and the Supercluster Contraction [11]

F. Hess. J. Comp. Chem. 40 (2019) 2664– 2676.
10.1002/jcc.26041 [12]


Lupe [13]

Catalytic HCl oxidation reaction: Stabilizing efect of Zr-doping on CeO2 nano-rods [14]

C. Li, Y. Sun, F. Hess, I. Djerdj, J. Sann, P. Vöpel, P. Cop, Y. Guo, B.M. Smarsly, H. Over. Appl. Catal. B 239 (2018) 628-635.
10.1016/j.apcatb.2018.08.047 [15]

Lupe [16]

The stabilizing effect of water and high reaction temperatures on the CeO2-catalyst in the harsh HCl oxidation reaction [17]

C. Li, F. Hess, I. Djerdj, G. Chai, Y. Sun, Y. Guo, B.M. Smarsly, H. Over. J. Catal. 357 (2018) 257-262.
10.1016/j.jcat.2017.11.019 [18]


Lupe [19]

Probing the Activity of Different Oxygen Species in the CO Oxidation over RuO2(110) by Combining Transient Reflection–Absorption Infrared Spectroscopy with Kinetic Monte Carlo Simulations [20]

F. Hess, C. Sack, D. Langsdorf, H. Over. ACS Catal. 7 (2017) 8420-8428.
10.1021/acscatal.7b02838 [21]

Lupe [22]

Rate-Determining Step or Rate-Determining Configuration? The Deacon Reaction over RuO2(110) Studied by DFT-Based KMC Simulations [23]

F. Hess, H. Over. ACS Catal. 7 (2017) 128-138.
10.1021/acscatal.6b02575 [24]


Lupe [25]

Combined experiment and theory approach in surface chemistry: Stairway to heaven? [26]

K.S. Exner, F. Hess, H. Over, A.P. Seitsonen. Surf. Sci. 640 (2015) 165-180.
10.1016/j.susc.2015.01.006 [27]


Lupe [28]

Perspective article: Kinetic Monte Carlo simulations of heterogeneously catalyzed oxidation reactions [29]

F. Hess, H. Over. Catal. Sci. Technol. 4 (2014) 583-598.
10.1039/C3CY00833A [30]


Electrospun Metal Oxide Nanofibres for the Assessment of Catalyst Morphological Stability under Harsh Reaction Conditions [31]

C.H. Kanzler, S. Urban, K. Zalewska-Wierzbicka, F. Hess, S. Rohrlack, C. Wessel, R. Ostermann, J.P. Hofmann, H. Over. Chem. Cat. Chem. 5 (2013) 2621-2626.
10.1002/cctc.201300301 [32]


Lupe [33]

One-dimensional confinement in heterogeneous catalysis: Trapped oxygen on RuO2(110) model catalysts [34]

F. Hess, P.P.T. Krause, S.F. Rohrlack, J.P. Hofmann, H. Over. Surf. Sci. 606 (2012) L69-L73.
10.1016/j.susc.2012.04.019 [35]

Lupe [36]

Adsorption of chlorine on Ru(0001)—A combined density functional theory and quantitative low energy electron diffraction study [37]

J.P. Hofmann, S.F. Rohrlack, F. Hess, J.C. Goritzka, P.P.T. Krause, A.P. Seitsonen, W. Moritz, H. Over. Surf. Sci. 606 (2012) 297-304.
10.1016/j.susc.2011.10.010 [38]

“First-Principles” Kinetic Monte Carlo simulations revisited: CO oxidation over RuO2(110) [39]

F. Hess, A. Farkas, A.P. Seitsonen, H. Over. J. Comp. Chem. 33 (2012) 757-766.
10.1002/jcc.22902 [40]

Lupe [41]

Experiment-Based Kinetic Monte Carlo Simulations: CO Oxidation over RuO2(110) [42]

A. Farkas, F. Hess, H. Over. J. Phys. Chem. C. 116 (2012) 581-591.
10.1021/jp204703p [43]

Prof. Dr. Franziska Heß
TU Berlin
Institute für Chemie
Faculty II
sec. TC 8
Building TC
Room TC 320
Straße des 17. Juni 124
10623 Berlin
+49 30 314 22728
+49 30 314 24973
+49 30 314 79552
e-mail query [44]
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