Triboelectricity-driven chemistry at oppositely charged triboelectric interfaces with ionic dyes
Sidra Tul Muntaha1,2, Tanlin Xu3, Shaoxin Li1,2
1Beijing Institute of Nanoenergy and Nanosystems, Chinese Academy of Sciences, Beijing, 101400, P. R. China. weidi@binn.cas.cn.
None:
Solid-liquid contact electrification (SL-CE) has emerged as a distinctive pathway for driving interfacial chemistry, yet the principles governing how triboelectric polarity couples with electrolyte identity to regulate reaction activity remain poorly understood. In this study, triboelectricity-driven chemistry at solid-liquid interfaces was examined using two representative materials positioned at far ends of the triboelectric series, and paired with cationic or anionic dyes. It was found that adsorption and the formation of an electrical double layer might result in suppressed interfacial charge transfer, leading to markedly diminished, and in some cases fully inhibited, generation of reactive oxygen species. These findings establish a mechanistic framework for triboelectric polarity-electrolyte coupling, highlighting the pivotal role of surface physicochemical properties in governing SL-CE and offering general design principles for optimizing triboelectricity-driven chemical reactions.
Related Concept Videos
The Electrical Double Layer
Electrochemical Systems
Interfacial Electrochemical Methods: Overview
Induced Electric Dipoles
Since the absolute value of potential energy holds no physical meaning, its zero value can be chosen as per...
Processes at Electrodes
Electrostatic Boundary Conditions in Dielectrics
Consider a case where both the mediums across a boundary are two different dielectric materials. Recall that the electric field and electric displacement are proportional and related through the material's permittivity....


