[go: up one dir, main page]

Zhang et al., 2015 - Google Patents

Ni2P-graphite nanoplatelets supported Au–Pd core–shell nanoparticles with superior electrochemical properties

Zhang et al., 2015

Document ID
14345739347027882154
Author
Zhang G
Liu Z
Xiao Z
Huang J
Li Q
Wang Y
Sun D
Publication year
Publication venue
The Journal of Physical Chemistry C

External Links

Snippet

Nanoparticles of Au–Pd with core–shell structure were synthesized through the coreduction of HAuCl4 and Na2PdCl4 in aqueous media by using cetyltrimethylammonium chloride as a reducing agent. The morphology and structure of the core–shell NPs were confirmed by …
Continue reading at pubs.acs.org (other versions)

Classifications

    • HELECTRICITY
    • H01BASIC ELECTRIC ELEMENTS
    • H01MPROCESSES OR MEANS, e.g. BATTERIES, FOR THE DIRECT CONVERSION OF CHEMICAL INTO ELECTRICAL ENERGY
    • H01M4/00Electrodes
    • H01M4/86Inert electrodes with catalytic activity, e.g. for fuel cells
    • H01M4/90Selection of catalytic material
    • H01M4/92Metals of platinum group
    • H01M4/925Metals of platinum group supported on carriers, e.g. powder carriers
    • H01M4/926Metals of platinum group supported on carriers, e.g. powder carriers on carbon or graphite
    • HELECTRICITY
    • H01BASIC ELECTRIC ELEMENTS
    • H01MPROCESSES OR MEANS, e.g. BATTERIES, FOR THE DIRECT CONVERSION OF CHEMICAL INTO ELECTRICAL ENERGY
    • H01M4/00Electrodes
    • H01M4/86Inert electrodes with catalytic activity, e.g. for fuel cells
    • H01M4/90Selection of catalytic material
    • H01M4/9075Catalytic material supported on carriers, e.g. powder carriers
    • H01M4/9083Catalytic material supported on carriers, e.g. powder carriers on carbon or graphite
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GASES [GHG] EMISSION, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E60/00Enabling technologies or technologies with a potential or indirect contribution to GHG emissions mitigation
    • Y02E60/50Fuel cells
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B82NANO-TECHNOLOGY
    • B82YSPECIFIC USES OR APPLICATIONS OF NANO-STRUCTURES; MEASUREMENT OR ANALYSIS OF NANO-STRUCTURES; MANUFACTURE OR TREATMENT OF NANO-STRUCTURES
    • B82Y30/00Nano-technology for materials or surface science, e.g. nano-composites

Similar Documents

Publication Publication Date Title
Zhang et al. Hierarchical Pt/Pt x Pb core/shell nanowires as efficient catalysts for electrooxidation of liquid fuels
Wang et al. Porous carbon-supported gold nanoparticles for oxygen reduction reaction: effects of nanoparticle size
Shao et al. Platinum group nanowires for efficient electrocatalysis
Fu et al. Facile one-step synthesis of three-dimensional Pd–Ag bimetallic alloy networks and their electrocatalytic activity toward ethanol oxidation
Wang et al. Engineering surface structure of Pt nanoshells on Pd nanocubes to preferentially expose active surfaces for ORR by manipulating the growth kinetics
Fan et al. Synthesis of 4H/fcc noble multimetallic nanoribbons for electrocatalytic hydrogen evolution reaction
Lu et al. Composition controllable synthesis of PtCu nanodendrites with efficient electrocatalytic activity for methanol oxidation induced by high index surface and electronic interaction
Choi et al. Multimetallic alloy nanotubes with nanoporous framework
Huang et al. High-index facets bounded platinum–lead concave nanocubes with enhanced electrocatalytic properties
Sun et al. Crystalline control of {111} bounded Pt3Cu nanocrystals: Multiply-twinned Pt3Cu icosahedra with enhanced electrocatalytic properties
Li et al. Scalable bromide-triggered synthesis of Pd@ Pt core–shell ultrathin nanowires with enhanced electrocatalytic performance toward oxygen reduction reaction
Kim et al. Shape-and composition-sensitive activity of Pt and PtAu catalysts for formic acid electrooxidation
Ahmed et al. Highly active graphene-supported Ni x Pd100–x binary alloyed catalysts for electro-oxidation of ethanol in an alkaline media
Zhang et al. Ni2P-graphite nanoplatelets supported Au–Pd core–shell nanoparticles with superior electrochemical properties
Xu et al. Facile construction of N-doped graphene supported hollow PtAg nanodendrites as highly efficient electrocatalysts toward formic acid oxidation reaction
Liao et al. Composition-tunable PtCu alloy nanowires and electrocatalytic synergy for methanol oxidation reaction
Xue et al. Structural regulation of PdCu2 nanoparticles and their electrocatalytic performance for ethanol oxidation
Li et al. Synthesis of monodisperse plasmonic Au core–Pt shell concave nanocubes with superior catalytic and electrocatalytic activity
Jin et al. Superior ethanol oxidation electrocatalysis enabled by ternary Pd–Rh–Te nanotubes
Lu et al. Nanoengineering 2D dendritic PdAgPt nanoalloys with edge-enriched active sites for enhanced alcohol electroxidation and electrocatalytic hydrogen evolution
Xu et al. High-performance polypyrrole functionalized PtPd electrocatalysts based on PtPd/PPy/PtPd three-layered nanotube arrays for the electrooxidation of small organic molecules
Yuan et al. Seed displacement, epitaxial synthesis of Rh/Pt bimetallic ultrathin nanowires for highly selective oxidizing ethanol to CO2
Jamil et al. Synthesis of hollow Pt-Ni nanoboxes for highly efficient methanol oxidation
Kuang et al. Ultrathin dendritic Pt3Cu triangular pyramid caps with enhanced electrocatalytic activity
Zheng et al. Component-controlled synthesis and assembly of Cu–Pd nanocrystals on graphene for oxygen reduction reaction