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häufig Zeigen Rechtschreibung b hammer and j.k norskov nature 376 1995 238 Rolle Stiefel Generator

A fundamental look at electrocatalytic sulfur reduction reaction | Nature  Catalysis
A fundamental look at electrocatalytic sulfur reduction reaction | Nature Catalysis

Machine Learning Accelerates the Discovery of Design Rules and Exceptions  in Stable Metal–Oxo Intermediate Formation | ACS Catalysis
Machine Learning Accelerates the Discovery of Design Rules and Exceptions in Stable Metal–Oxo Intermediate Formation | ACS Catalysis

arXiv:1610.01746v1 [physics.comp-ph] 6 Oct 2016
arXiv:1610.01746v1 [physics.comp-ph] 6 Oct 2016

Predicting the Catalytic Activity of Surface Oxidation Reactions by  Ionization Energies
Predicting the Catalytic Activity of Surface Oxidation Reactions by Ionization Energies

Turning main-group element magnesium into a highly active electrocatalyst  for oxygen reduction reaction | Nature Communications
Turning main-group element magnesium into a highly active electrocatalyst for oxygen reduction reaction | Nature Communications

Oxygen-Inserted Top-Surface Layers of Ni for Boosting Alkaline Hydrogen  Oxidation Electrocatalysis | Journal of the American Chemical Society
Oxygen-Inserted Top-Surface Layers of Ni for Boosting Alkaline Hydrogen Oxidation Electrocatalysis | Journal of the American Chemical Society

PDF) Progress and Challenges Toward the Rational Design of Oxygen  Electrocatalysts Based on a Descriptor Approach
PDF) Progress and Challenges Toward the Rational Design of Oxygen Electrocatalysts Based on a Descriptor Approach

Electronic structure factors and the importance of adsorbate effects in  chemisorption on surface alloys | npj Computational Materials
Electronic structure factors and the importance of adsorbate effects in chemisorption on surface alloys | npj Computational Materials

Rational Design of Atomic Site Catalysts for Electrocatalytic Nitrogen  Reduction Reaction: One Step Closer to Optimum Activity and Selectivity |  SpringerLink
Rational Design of Atomic Site Catalysts for Electrocatalytic Nitrogen Reduction Reaction: One Step Closer to Optimum Activity and Selectivity | SpringerLink

Frontiers | Activation of Gold on Metal Carbides: Novel Catalysts for C1  Chemistry
Frontiers | Activation of Gold on Metal Carbides: Novel Catalysts for C1 Chemistry

Gold catalysts containing interstitial carbon atoms boost hydrogenation  activity | Nature Communications
Gold catalysts containing interstitial carbon atoms boost hydrogenation activity | Nature Communications

Methan Kultur Eichhörnchen b hammer and j.k norskov nature 376 1995 238 Du  wirst besser werden Reichlich Pro
Methan Kultur Eichhörnchen b hammer and j.k norskov nature 376 1995 238 Du wirst besser werden Reichlich Pro

Phase-enabled metal-organic framework homojunction for highly selective CO2  photoreduction | Nature Communications
Phase-enabled metal-organic framework homojunction for highly selective CO2 photoreduction | Nature Communications

Wetting Induced Oxidation of Pt-based Nano Catalysts Revealed by In Situ  High Energy Resolution X-ray Absorption Spectroscopy | Scientific Reports
Wetting Induced Oxidation of Pt-based Nano Catalysts Revealed by In Situ High Energy Resolution X-ray Absorption Spectroscopy | Scientific Reports

Toward a mechanistic understanding of electrocatalytic nanocarbon | Nature  Communications
Toward a mechanistic understanding of electrocatalytic nanocarbon | Nature Communications

High-Density Fe single atoms anchored on 2D-Fe2C12 monolayer materials for  N2 reduction to NH3 with high activity and selectivity - ScienceDirect
High-Density Fe single atoms anchored on 2D-Fe2C12 monolayer materials for N2 reduction to NH3 with high activity and selectivity - ScienceDirect

Machine learned features from density of states for accurate adsorption  energy prediction | Nature Communications
Machine learned features from density of states for accurate adsorption energy prediction | Nature Communications

Bimetallic electrodes boost molecular junctions | Nature Materials
Bimetallic electrodes boost molecular junctions | Nature Materials

Initial atomic-scale oxidation pathways on a Ni–15Cr(100) alloy surface |  npj Materials Degradation
Initial atomic-scale oxidation pathways on a Ni–15Cr(100) alloy surface | npj Materials Degradation

Exegese braten Zoomen b hammer and j.k norskov nature 376 1995 238 Schlitz  Twist aus
Exegese braten Zoomen b hammer and j.k norskov nature 376 1995 238 Schlitz Twist aus

Methan Kultur Eichhörnchen b hammer and j.k norskov nature 376 1995 238 Du  wirst besser werden Reichlich Pro
Methan Kultur Eichhörnchen b hammer and j.k norskov nature 376 1995 238 Du wirst besser werden Reichlich Pro

Dynamics of H2 dissociation on the close-packed (111) surface of the  noblest metal: H2 + Au(111): The Journal of Chemical Physics: Vol 145, No 14
Dynamics of H2 dissociation on the close-packed (111) surface of the noblest metal: H2 + Au(111): The Journal of Chemical Physics: Vol 145, No 14

Initial atomic-scale oxidation pathways on a Ni–15Cr(100) alloy surface |  npj Materials Degradation
Initial atomic-scale oxidation pathways on a Ni–15Cr(100) alloy surface | npj Materials Degradation

Electronic metal–support interaction modulates single-atom platinum  catalysis for hydrogen evolution reaction | Nature Communications
Electronic metal–support interaction modulates single-atom platinum catalysis for hydrogen evolution reaction | Nature Communications

Tuning surface d bands with bimetallic electrodes to facilitate electron  transport across molecular junctions | Nature Materials
Tuning surface d bands with bimetallic electrodes to facilitate electron transport across molecular junctions | Nature Materials

Copper-triggered delocalization of bismuth p-orbital favours  high-throughput CO2 electroreduction - ScienceDirect
Copper-triggered delocalization of bismuth p-orbital favours high-throughput CO2 electroreduction - ScienceDirect

Boosting the performance of single-atom catalysts via external electric  field polarization | Nature Communications
Boosting the performance of single-atom catalysts via external electric field polarization | Nature Communications

Measuring the Electronic Structure of Alloy Materials and Relating it to  their Catalytic Performance
Measuring the Electronic Structure of Alloy Materials and Relating it to their Catalytic Performance

Identifying the impact of the covalent-bonded carbon matrix to FeN4 sites  for acidic oxygen reduction | Nature Communications
Identifying the impact of the covalent-bonded carbon matrix to FeN4 sites for acidic oxygen reduction | Nature Communications