Related Experiment Video
Updated: Jun 14, 2026

In Situ SIMS and IR Spectroscopy of Well-defined Surfaces Prepared by Soft Landing of Mass-selected Ions
Published on: June 16, 2014
Dynamics of gold nanocluster on MgO surface with F-center defect and its implication for CO oxidation
Vikas Tiwari1, Dhananjay1, Tarak Karmakar1
1Department of Chemistry, Indian Institute of Technology, Delhi, 110016 New Delhi, India.
Abstract:
Gold nanoclusters supported on oxide surfaces exhibit enhanced catalytic activity due to charge redistribution at defect sites and strong metal-support interactions. In this study, we employ machine-learned interatomic potential-based simulations to investigate the dynamics of Au8 nanoclusters adsorbed on an oxygen-vacancy (F-center) defected MgO (100) surface. On-the-fly probability-enhanced sampling (OPES) simulations driven by a graph neural network-based collective variable reveal the low-energy conformational landscape of Au8 and the preferred binding site of CO, while machine-learned Bader charges uncover an inverse correlation between Au-Au coordination number and localized negative charge on undercoordinated Au atoms. The most stable Au8 conformer was then used to probe CO adsorption, which shows preferential binding of CO to the most negatively charged undercoordinated Au sites. Subsequent O2 adsorption resulted in significant charge transfer that enhances CO oxidation reactivity on the FC-defected MgO (100) surface. These findings highlight how defect-mediated charge transfer and cluster morphology together dictate adsorption behavior and catalytic functionality on oxide supports.
More Related Videos
08:21A Simple Method for the Size Controlled Synthesis of Stable Oligomeric Clusters of Gold Nanoparticles under Ambient Conditions
Published on: February 5, 2016
08:18Microscopic Visualization of Porous Nanographenes Synthesized through a Combination of Solution and On-Surface Chemistry
Published on: March 4, 2021