Single-nanoparticle catalysis at single-turnover resolution
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Summary
Recent developments in using single-molecule fluorescence microscopy to study single nanoparticle catalysis reveal and quantify heterogeneous and dynamic behavior of individual nanoparticles that highlight the intricate interplay between catalysis, heterogeneous reactivity, variable surface sites, and surface restructuring dynamics in nanocatalysis.
- Type
- article
- Published
- 2009-03-05
- Cited by
- 61
- References
- 57
- OpenAlex
- https://openalex.org/W1973237572
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:43959841
Keywords
Nanoparticle, Catalysis, Nanotechnology, Heterogeneous catalysis, Chemistry
References
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- Heterogeneous catalysis in practice
- Phase transitions and adsorbate restructuring at metal surfaces
- Dynamic in situ observation of rapid size and shape change of supported Pd nanoparticles during CO/NO cycling.
- Tunable gold catalysts for selective hydrocarbon oxidation under mild conditions
- Identification of Active Edge Sites for Electrochemical H2 Evolution from MoS2 Nanocatalysts
- Reaction-Driven Restructuring of Rh-Pd and Pt-Pd Core-Shell Nanoparticles
- Single molecule studies of enzyme mechanisms.
- Chemistry and properties of nanocrystals of different shapes.
- The Impact of Nanoscience on Heterogeneous Catalysis
- Shape-Controlled Synthesis of Gold and Silver Nanoparticles
- An Electrochemical Coulomb Staircase: Detection of Single Electron-Transfer Events at Nanometer Electrodes
- Dynamic adsorbate/reaction induced structural change of supported metal nanoparticles: heterogeneous catalysis and beyond.
- Introduction to surface chemistry and catalysis
- Nanoscale chemical imaging of a working catalyst by scanning transmission X-ray microscopy
- Spatially resolved observation of crystal-face-dependent catalysis by single turnover counting
- New Developments in Transmission Electron Microscopy for Nanotechnology
- Novel method for the investigation of single nanoparticle reactivity.
- Nano-scale effects in electrochemistry
- Single-Molecule Kinetic Theory of Heterogeneous and Enzyme Catalysis
Cited by
- Pd@Au core-shell nanocrystals with concave cubic shapes: kinetically controlled synthesis and electrocatalytic properties.
- Statistical Analysis Of Single Nanoparticle Catalysis
- The impacts of nanotechnology on catalysis by precious metal nanoparticles
- Optical approaches in study of nanocatalysis with single-molecule and single-particle resolution
- Monitoring Cu2+‐Binding to a DNA‐Clip‐phen Conjugate and Metal‐centered Redox Processes by a Fluorescent Reporter Group
- Heterogeneities of individual catalyst particles in space and time as monitored by spectroscopy.
- Porous silica and carbon derived materials from rice husk pyrolysis char
- An extracellular enzyme synthesizes narrow-sized silver nanoparticles in both water and methanol
- Distinguishing alternative reaction pathways by single-molecule fluorescence spectroscopy.
- Resonance Raman and surface- and tip-enhanced Raman spectroscopy methods to study solid catalysts and heterogeneous catalytic reactions.
- Interpreting single turnover catalysis measurements with constrained mean dwell times.
- Fluid to soft-glass transition in a quasi-2D system: thermodynamic and rheological evidences for a Langmuir monolayer.
- Size-dependent catalytic activity and dynamics of gold nanoparticles at the single-molecule level.
- Preparation of analcime from local kaolin and rice husk ash
- Supramolecular chirality of cysteine modified silver nanoparticles
- Reduction of resazurin to resorufin catalyzed by gold nanoparticles: dramatic reaction acceleration by laser or LED plasmon excitation
- Interfacial charge transfer events of BODIPY molecules: single molecule spectroelectrochemistry and substrate effects.
- Creating and mastering nano-objects to design advanced catalytic materials
- Single-molecule nanoscale electrocatalysis.
- Fluorescence micro(spectro)scopy as a tool to study catalytic materials in action.
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