Journal article
Electric Double-Layer Interaction between Dissimilar Charge-Conserved Conducting Plates
DYC Chan
Langmuir | AMER CHEMICAL SOC | Published : 2015
Abstract
Small metallic particles used in forming nanostructured to impart novel optical, catalytic, or tribo-rheological can be modeled as conducting particles with equipotential surfaces that carry a net surface charge. The value of the surface potential will vary with the separation between interacting particles, and in the absence of charge-transfer or electrochemical reactions across the particle surface, the total charge of each particle must also remain constant. These two physical conditions require the electrostatic boundary condition for metallic nanoparticles to satisfy an equipotential whole-of-particle charge conservation constraint that has not been studied previously. This constraint g..
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Grants
Awarded by Australian Research Council
Funding Acknowledgements
This work is supported in part by an Australian Research Council Discovery Project Grant.