Catalysts for Efficient Hydrogenolysis of Ester A General ... · A General Approach for the...
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A General Approach for the Synthesis of Bimetallic M-Sn (M=Ru, Rh and Ir) Catalysts for Efficient Hydrogenolysis of EsterAkshaya K. Samal,a Haibo Zhu,a,* Moussab Harb,a Shiv S. Sangaru,a Dalaver H. Anjum,b Mohamed N. Hedhili,b Youssef Saih,a and Jean-Marie Basseta,*
a.KAUST Catalysis Center, King Abdullah University of Science and Technology, Thuwal 23955-6900, Saudi Arabia, E-mail: [email protected], [email protected]
b.Imaging and Characterization Lab, King Abdullah University of Science and Technology, Thuwal 23955-6900, Saudi Arabia
Electronic Supplementary Material (ESI) for Catalysis Science & Technology.This journal is © The Royal Society of Chemistry 2016
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Fig. S1 STEM images of Ir-Sn nanoparticles with different magnification (A, B and C) and EDS point analysis on a randomly selected Ir-Sn bimetallic nanoparticle. Presence of Cu is obtained from carbon coated copper grid.
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Fig. S2 TEM images of Ir-Sn/SiO2 catalyst synthesized by impregnation method.
Fig. S3 EDS analyses on two randomly selected particles from Fig. S2.
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Fig. S4 DFT-optimized isomers of Ru33Sn22 nanoclusters. For each structure, the relative energy is given in brackets. Color legend: Ru in green and Sn in gray. The Sn elements are shown in bigger size balls.
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Fig. S5 DFT-optimized isomers of Rh33Sn22 nanoclusters. For each structure, the relative energy is given in brackets. Color legend: Rh in blue and Sn in gray. The Sn elements are shown in bigger size balls.
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Fig. S6 DFT-optimized isomers of Ir33Sn22 nanoclusters. For each structure, the relative energy is given in brackets. Color legend: Ir in orange and Sn in gray. The Sn elements are shown in bigger size balls.
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Fig. S7 XPS spectrum of the Sn 4d core level measured from as-synthesized Ru-Sn and Ir-Sn bimetallic samples.
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Fig. S8 XPS spectra of the Ru3d and Ir 4f core level measured from as-synthesized Ru-Sn and Ir-Sn bimetallic samples.
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Fig. S9 Conversion versus selectivity in ethyl acetate hydrogenolysis reaction over Ru-Sn and Ir-Sn catalysts at 320 °C.
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Fig. S10 TEM images of Rh-Sn/SiO2 catalyst before and after hydrogenolysis reaction.