Javascript must be enabled to continue!
Electric-Field Assisted Modulation of Surface Thermochemistry
View through CrossRef
Conventional
catalyst design has enhanced reactivity and product selectivity through control
of surface thermochemistry by tunable surface composition and the surrounding
environment (e.g., pore structure). In this work, the prospect for electric
field towards controlling product selectivity and reaction networks on the
Pt(111) surface was evaluated with periodic density functional theory (DFT)
calculations in concert with machine learning (ML) algorithms. Linear scaling
relationships (LSRs) for adsorption energies of surface species in electric
field were shown to: (i) be distinct as compared to zero-field LSRs across
metals, and (ii) linearly correlate with adsorption energies of H* rather than
the binding element. The slope of LSRs linearly correlated with the zero-field
dipole moment. A random forest ML regression algorithm predicted
field-dependent adsorption energies with a mean absolute error (0.12 eV)
comparable to DFT. Overall, this study identifies the path forward for electric
field-assisted catalysis, specifically towards catalyst poisoning, product
selectivity, and control of reaction pathways.
American Chemical Society (ACS)
Title: Electric-Field Assisted Modulation of Surface Thermochemistry
Description:
Conventional
catalyst design has enhanced reactivity and product selectivity through control
of surface thermochemistry by tunable surface composition and the surrounding
environment (e.
g.
, pore structure).
In this work, the prospect for electric
field towards controlling product selectivity and reaction networks on the
Pt(111) surface was evaluated with periodic density functional theory (DFT)
calculations in concert with machine learning (ML) algorithms.
Linear scaling
relationships (LSRs) for adsorption energies of surface species in electric
field were shown to: (i) be distinct as compared to zero-field LSRs across
metals, and (ii) linearly correlate with adsorption energies of H* rather than
the binding element.
The slope of LSRs linearly correlated with the zero-field
dipole moment.
A random forest ML regression algorithm predicted
field-dependent adsorption energies with a mean absolute error (0.
12 eV)
comparable to DFT.
Overall, this study identifies the path forward for electric
field-assisted catalysis, specifically towards catalyst poisoning, product
selectivity, and control of reaction pathways.
Related Results
Field-emission current densities of carbon nanotube under the different electric fields
Field-emission current densities of carbon nanotube under the different electric fields
The field emission current variation law of carbon nanotube in a large electric field range (0-32 V m-1) is analyzed in depth by combining the density functional theory with metal ...
Electric Conductance
Electric Conductance
The migration of colloidal soil particles in an applied electric field has been discussed in Chapter 7. Soil particles carrying electric charges invariably adsorb equivalent amount...
Molecular structure and properties of sulfur dioxide under the external electric field
Molecular structure and properties of sulfur dioxide under the external electric field
SO2 is not only an important resource but also a notorious air pollutant, so it has attracted increasing attention nowadays. This paper focuses on the influence of external electri...
Analysis of Partial Electrocoalescence by Level-Set and Finite Element Methods
Analysis of Partial Electrocoalescence by Level-Set and Finite Element Methods
The coalescence of a water drop in a dieletric oil phase at a water layer interface in the presence of an electric field is simulated by solving the Navier-Stokes and charge conser...
Opportunities and Scope of Electric Vehicle in India
Opportunities and Scope of Electric Vehicle in India
The vehicle industry has advanced due to the introduction of new technology. Alternatives to internal combustion engines include electric automobiles. Demand for electric vehicles ...
Measurement of backscattered electric field of chipless radio frequency identification tag based on Rydberg atoms
Measurement of backscattered electric field of chipless radio frequency identification tag based on Rydberg atoms
Chipless radio frequency identification tags have been widely used in many areas, such as vehicle recognition and identification of goods. Near-field measurement of a chipless radi...
Mechanochemistry of Phosphate Esters withExternal Electric Fields
Mechanochemistry of Phosphate Esters withExternal Electric Fields
The growth of tribofilms from the mechanochemical decomposition of lubricant additives is crucial to prevent wear of sliding metal surfaces. For some applications, such as electric...
Electric field tuning characteristic of multiple optical parametric oscillator based on MgO:QPLN
Electric field tuning characteristic of multiple optical parametric oscillator based on MgO:QPLN
The quasi-phase matching optical parametric oscillator tuning methods, i.e. grating period tuning, temperature tuning, pumping wavelength tuning, and angle tuning are more simple a...

