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Activation of copper species on carbon nitride for enhanced activity in the arylation of amines
Vorobyeva, E., Gerken, V. C., Mitchell, S., Sabadell-Rendón, A., Hauert, R., Xi, S., … Pérez-Ramírez, J. (2020). Activation of copper species on carbon nitride for enhanced activity in the arylation of amines. ACS Catalysis, 10(19), 11069-11080. https://doi.org/10.1021/acscatal.0c03164
Enhanced reduction of CO<SUB>2</SUB> to CO over Cu–In electrocatalysts: Catalyst evolution is the key
Larrazábal, G. O., Martín, A. J., Mitchell, S., Hauert, R., & Pérez-Ramírez, J. (2016). Enhanced reduction of CO2 to CO over Cu–In electrocatalysts: Catalyst evolution is the key. ACS Catalysis, 6(9), 6265-6274. https://doi.org/10.1021/acscatal.6b02067
Comparative study of Cu-precursors for 3D focused electron beam induced deposition
Luisier, A., Utke, I., Bret, T., Cicoira, F., Hauert, R., Rhee, S. W., … Hoffmann, P. (2003). Comparative study of Cu-precursors for 3D focused electron beam induced deposition. In M. D. Allendorf, F. Maury, & F. Teyssandier (Eds.), Vol. 2. Chemical vapor denosilion XVI and EUROCVD 14 : proceedings of the international symposium (pp. 1318-1326). Electrochemical society.
Growth of copper films by metal organic vapor deposition using (pyrazolylborate)copper(I) compounds
Plappert, E. C., Stumm, T., van den Bergh, H., Hauert, R., & Dahmen, K. H. (1997). Growth of copper films by metal organic vapor deposition using (pyrazolylborate)copper(I) compounds. Chemical Vapor Deposition, 3(1), 37-43. https://doi.org/10.1002/cvde.19970030106