نتایج جستجو برای: bimetallic nanoparticles

تعداد نتایج: 110173  

2014
Concha Tojo Nuria Vila-Romeu

Computer calculations were carried out to determine the reaction rates and the mean structure of bimetallic nanoparticles prepared via a microemulsion route. The rates of reaction of each metal were calculated for a particular microemulsion composition (fixed intermicellar exchange rate) and varying reduction rate ratios between both metal and metal salt concentration inside the micelles. Model...

Journal: :ACS nano 2009
Benjamin D Yuhas Susan E Habas Sirine C Fakra Taleb Mokari

We present a detailed analysis of the structural and magnetic properties of solution-grown PtCo-CdS hybrid structures in comparison to similar free-standing PtCo alloy nanoparticles. X-ray absorption spectroscopy is utilized as a sensitive probe for identifying subtle differences in the structure of the hybrid materials. We found that the growth of bimetallic tips on a CdS nanorod substrate lea...

2008
Yuying Shu Luis E. Murillo Jeffrey P. Bosco Wei Huang Anatoly I. Frenkel Jingguang G. Chen

The effect of impregnation sequence on the formation of Pt/Ni bimetallic nanoparticles supported on g-Al2O3 was investigated for catalysts with Pt/Ni atomic ratios of 3/1 and 1/1. These bimetallic catalysts were prepared with a fixed Pt loading (5 wt.%) by incipient impregnation of one metal precursor and calcination, followed by the impregnation of the second metal precursor and a second calci...

2013
Hyun You Kim Graeme Henkelman

We use density functional theory (DFT) to study CO-adsorption-induced Pd surface segregation in Au/Pd bimetallic surfaces, dynamics of Pd−Au swapping, effect of defects on the swapping rate, CO-induced Pd clustering, and the reaction mechanism of CO oxidation. The strong COphilic nature of Pd atoms supplies a driving force for the preferential surface segregation of Pd atoms and Pd cluster form...

Journal: :Physical chemistry chemical physics : PCCP 2017
Shenghua Wang Zhiling Xin Xing Huang Weizhen Yu Shuo Niu Lidong Shao

Palladium (Pd)-catalyzed selective hydrogenation of alkynes has been one of the most studied hydrogenation reactions in the last century. However, kinetic studies conducted to reveal the catalyst's active centers have been hindered because of dynamic surface changes on Pd during the reaction. In the present study, bimetallic Pd-Au nanoparticles supported on carbon nanotubes have been synthesize...

2014
Hui Liu Feng Ye Qiaofeng Yao Hongbin Cao Jianping Xie Jim Yang Lee Jun Yang

The usefulness of Pt-based nanomaterials for catalysis can be greatly enhanced by coupling morphology engineering to the strategic presence of a second or even third metal. Here we demonstrate the design and preparation of stellated Ag-Pt bimetallic nanoparticles where significant activity difference between the methanol oxidation reaction (MOR) and the oxygen reduction reaction (ORR) may be re...

Journal: :Molecules 2016
Valentina Pifferi Carine E Chan-Thaw Sebastiano Campisi Anna Testolin Alberto Villa Luigi Falciola Laura Prati

Au-based catalysts are widely used in important processes because of their peculiar characteristics. The catalyst performance depends strongly on the nature and structure of the metal nanoparticles, especially in the case of bimetallic catalysts where synergistic effects between the two metals can be occasionally seen. In this paper, it is shown that electrochemical characterisation (cyclovolta...

Journal: :Nanoscale 2010
Ian Robinson Le D Tung Shinya Maenosono Christoph Wälti Nguyen T K Thanh

Core-shell magnetic nanoparticles have received significant attention recently and are actively investigated owing to their large potential for a variety of applications. Here, the synthesis and characterization of bimetallic nanoparticles containing a magnetic core and a gold shell are discussed. The gold shell facilitates, for example, the conjugation of thiolated biological molecules to the ...

Journal: :Catalysis Science & Technology 2021

Chemoselective hydrogenation of 5-(hydroxymethyl)furfural (HMF) to 2,5-bis(hydroxymethyl)furan (BHMF) has been efficiently performed using bimetallic CuFe nanoparticles covered by thin carbon layers as catalysts.

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