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Dendrimer Templated Synthesis of One Nanometer Rh and Pt Particles Supported on Mesoporous Silica: Catalytic Activity for Ethylene and Pyrrole Hydrogenation
Nano Letters (2008)
  • Wenyu Huang, University of California - Berkeley
  • John N. Kuhn, University of California - Berkeley
  • Chia-Kuang Tsung, University of California - Berkeley
  • Yawen Zhang, University of California - Berkeley
  • Susan E. Habas, University of California - Berkeley
  • Peidong Yang, University of California - Berkeley
  • Gabor A. Somorrjai, University of California - Berkeley
Abstract

Monodisperse rhodium (Rh) and platinum (Pt) nanoparticles as small as ∼1 nm were synthesized within a fourth generation polyaminoamide (PAMAM) dendrimer, a hyperbranched polymer, in aqueous solution and immobilized by depositing onto a high-surface-area SBA-15 mesoporous support. X-ray photoelectron spectroscopy indicated that the as-synthesized Rh and Pt nanoparticles were mostly oxidized. Catalytic activity of the SBA-15 supported Rh and Pt nanoparticles was studied with ethylene hydrogenation at 273 and 293 K in 10 torr of ethylene and 100 torr of H2 after reduction (76 torr of H2 mixed with 690 torr of He) at different temperatures. Catalysts were active without removing the dendrimer capping but reached their highest activity after hydrogen reduction at a moderate temperature (423 K). When treated at a higher temperature (473, 573, and 673 K) in hydrogen, catalytic activity decreased. By using the same treatment that led to maximum ethylene hydrogenation activity, catalytic activity was also evaluated for pyrrole hydrogenation.

Publication Date
2008
Publisher Statement
Reprinted (adapted) with permission from Nano Lett., 2008, 8 (7), pp 2027–2034. Copyright 2008 American Chemical Society.
Citation Information
Wenyu Huang, John N. Kuhn, Chia-Kuang Tsung, Yawen Zhang, et al.. "Dendrimer Templated Synthesis of One Nanometer Rh and Pt Particles Supported on Mesoporous Silica: Catalytic Activity for Ethylene and Pyrrole Hydrogenation" Nano Letters Vol. 8 Iss. 7 (2008)
Available at: http://works.bepress.com/wenyu_huang/18/