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Titlebook: Nanotechnology in Catalysis 3; Bing Zhou,Scott Han,Gabor A. Somorjai Book 2007 Springer-Verlag New York 2007 Gold.Nanomaterial.Nanomotor.c

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Carbon-Supported Core-Shell PtSn Nanoparticles: Synthesis, Characterization and Performance as AnodIn recent decades, direct alcohol fuel cells (DAFCs) have been extensively studied and considered as possible power sources for portable electronic devices and vehicles in the near future.. The application of methanol is limited due to its high volatility and toxicity,. although it is relatively easily oxidized to CO. and protons.
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Bing Zhou,Scott Han,Gabor A. SomorjaiThird volume in the sucessful Nanotechnology in Catalysis sub-series.The contributors are all world-renowned experts in the field.Nanocatalysis is arguably the most advanced area of nanotechnology, ha
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A Dual Catalytic Role of Co Nanoparticles in Bulk Synthesis of Si-Based Nanowires,e employed molecular nanoparticles in catalysis.. The benefits of applying nanotechnology to catalysis include improved activity, lifetime, resistance to poisoning, and other novel abilities such as catalyzing the growth of carbon nanotubes. These improvements and novelties cannot always be achieved with catalysts prepared by other methods.
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Dendrimer Templates for Supported Nanoparticle Catalysts,rocesses.. Similarly, developing new catalysts for more efficient, cost-effective processes will be especially important for growing industries involved in the potential development of a hydrogen economy..
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1571-5744 sis is arguably the most advanced area of nanotechnology, haCatalysts,heterogeneous,homogeneous,andenzyme,areusuallynanoparticles.These areofvitalforthefunctioningofthehumanbody,forphotosynthesis,andforproducing fuels and chemicals in the petroleum and chemical industries. Interest in nanoscience an
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,Highly Effective Nanocatalysts Prepared Through Sol—Gel Technique,s alkylation, dehydration, isomerization and cracking, etc.. In particular, they are the candidates for potential replacement of the liquid acid catalysts, such as hydrofluoric acid or sulfuric acid in commercial gasoline refining processes. Modified complex oxides are good candidates due to their strong acidity.
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