Operando X-Ray Photoelectron Spectroscopy Studies of Aqueous Electrocatalytic Systems
Author:
Publisher
Springer Science and Business Media LLC
Subject
General Chemistry,Catalysis
Link
http://link.springer.com/content/pdf/10.1007/s11244-015-0525-3.pdf
Reference62 articles.
1. Ackermann MD, Pedersen TM, Hendriksen BLM, Robach O, Bobaru SC, Popa I, Quiros C, Kim H, Hammer B, Ferrer S, Frenken JWM (2005) Structure and reactivity of surface oxides on Pt(110) during catalytic CO oxidation. Phys Rev Lett 95(25):255505
2. Bazin D, Kovacs I, Guczi L, Parent P, Laffon C, De Groot F, Ducreux O, Lynch J (2000) Genesis of Co/SiO2 catalysts: XAS study at the cobalt L-III, absorption edges. J Catal 189(2):456–462
3. de Smit E, de Groot FMF, Blume R, Havecker M, Knop-Gericke A, Weckhuysen BM (2010) The role of Cu on the reduction behavior and surface properties of Fe-based Fischer–Tropsch catalysts. Phys Chem Chem Phys 12(3):667–680
4. de Smit E, Swart I, Creemer JF, Hoveling GH, Gilles MK, Tyliszczak T, Kooyman PJ, Zandbergen HW, Morin C, Weckhuysen BM, de Groot FMF (2008) Nanoscale chemical imaging of a working catalyst by scanning transmission X-ray microscopy. Nature 456(7219):222–225
5. Delgass WN, Haller GL, Kellerman R, Lunsfor JH (1979) Spectroscopy in Heterogeneous Catalysis. Academic Press, New York
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