Publications of Josef Find

Journal Article (12)

1.
Journal Article
Raymundo-Pinero, E., D. Cazorla-Amoros, A. Linares-Solano, J. Find, U. Wild and R. Schlögl: Structural characterization of N-containing activated carbon fibers prepared from a low softening point petroleum pitch and a melamine resin. Carbon 40 (4), 597–608 (2002).
2.
Journal Article
Paál, Z., U. Wild, A. Wootsch, J. Find and R. Schlögl: Surface and bulk structural response of Pt black upon its hydrogen treatment and catalytic reaction with n-hexane. Physical Chemistry Chemical Physics 3 (11), 2148–2155 (2001).
3.
Journal Article
Ressler, T., O. Timpe, T. Neisius, J. Find, M. Dieterle, G. Mestl and R. Schlögl: Time-resolved XAS investigations of the reduction / oxidation of MoO3-x. Journal of Catalysis 191 (1), 75–85 (2000).
4.
Journal Article
Find, J., Z. Paál, R. Schlögl and U. Wild: An attempt to bridge the pressure and material gap with a disperse model catalyst for low-temperature alkane reforming. Catalysis Letters 65 (1-3), 19–23 (2000).
5.
Journal Article
Yang, J., G. Mestl, D. Herein, R. Schlögl and J. Find: Reaction of NO with carbonaceous materials: 1. reaction and adsorption of NO on ashless carbon black. Carbon 38 (5), 715–727 (2000).
6.
Journal Article
Yang, J., G. Mestl, D. Herein, R. Schlögl and J. Find: Reaction of NO with carbonaceous materials: 2. effect of oxygen on the reaction of NO with ashless carbon black. Carbon 38 (5), 729–740 (2000).
7.
Journal Article
Yang, J., E. Sanchez-Cortezon, N. Pfänder, U. Wild, G. Mestl, J. Find and R. Schlögl: Reaction of NO with carbonaceous materials: 3. influence of the structure of carbonaceous materials on their reactivity towards NO. Carbon 38 (14), 2029–2039 (2000).
8.
Journal Article
Find, J., D. Herein, Y. Uchida and R. Schlögl: A new three-dimensional structural model for the CuCl2 graphite intercalation compound. Carbon 37 (9), 1431–1441 (1999).
9.
Journal Article
Belz, T., A. Bauer, J. Find, M.M. Guenter, D. Herein, H. Möckel, N. Pfänder, H. Sauer, G. Schulz, J. Schütze, O. Timpe, U. Wild and R. Schlögl: Structural and chemical characterization of N-doped nanocarbons. Carbon 36, 731–741 (1998).
10.
Journal Article
Rühle, T., H. Schneider, J. Find, D. Herein, N. Pfänder, U. Wild, R. Schlögl, D. Nachtigall, S. Artelt and U. Heinrich: Preparation and characterisation of Pt/Al2O3 aerosol precursors as model Pt-emissions from catalytic converters. Applied Catalysis B: Environmental 14 (1-2), 69–84 (1997).
11.
Journal Article
Sulikowski, B., J. Find, H.G. Karge and D. Herein: Solid-state ion exchange in zeolites: Part 8. Interaction of lanthanum(III) chloride with zeolites under anhydrous conditions. Zeolites 19 (5-6), 395–403 (1997).
12.
Journal Article
Belz, T., J. Find, D. Herein, N. Pfänder, T. Rühle, H. Werner, M. Wohlers and R. Schlögl: On the production of different carbon forms by electric arc graphite evaporation. Berichte der Bunsen-Gesellschaft 101 (4), 712–725 (1997).

Book Chapter (2)

13.
Book Chapter
Find, J., Z. Paál, H. Sauer, R. Schlögl, U. Wild and A. Wootsch: Structures, surfaces state and catalytic properties of a model Pt catalyst. In: 12th International Congress on Catalysis. (Eds.): A. Corma, F.V. Melo, S. Mendioroz, and J.L.G. Fierro. (Studies in Surface Science and Catalysis, Vol. 130). Elsevier, Amsterdam, 2291–2296 (2000).
14.
Book Chapter
Sánchez Macias, E., Y. Yang, J. Find, T. Braun, R. Schoonmaker, T. Belz, H. Sauer, O. Spillecke, Y. Uchida and R. Schlögl: Elemental carbon as catalytic material: Recent trends and perspectives. In: Proceedings of the Third Tokyo Conference on Advanced Catalytic Science and Technology. (Studies in Surface Science and Catalysis, Vol. 121). Elsevier, Amsterdam, 317–326 (1999).

Conference Paper (1)

15.
Conference Paper
Sulikowski, B., J. Find, H.G. Karge and D. Herein: Interaction of lanthanum(III) chloride with zeolites under anhydrous conditions. In: Polish-German Zeolite Colloquium. Nicholas Copernicus University Press, , 323–340 (1998).

Thesis - PhD (1)

16.
Thesis - PhD
Find, J.: Herstellung und katalytische Eigenschaften von auf Graphit getraegertem, nanokristallinem Kupfer in der heterogenen Katalyse. Technische Universität Berlin
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