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Updated: May 10, 2026

Simple Methods for the Preparation of Non-noble Metal Bulk-electrodes for Electrocatalytic Applications
Published on: June 21, 2017
From molecular architecture to environmental action: a new palladium-based perovskite catalyst as a cathodic modifier
Houyem Khlifi1, Ahlem Guesmi2, Nejmeddine Rabaaoui1
1Laboratory Physical-Chemistry of the Solid State, Department of Chemistry, Faculty of Sciences of Sfax, University of Sfax BP 1171 3000 Sfax Tunisia houcine_naili@yahoo.com houcine.naili@fss.rnu.tn.
Abstract:
A new one-dimensional (1D) palladium-based hybrid perovskite, (C9H8N)[PdCl3(H2O)], has been synthesized and structurally characterized, revealing a distinctive asymmetric architecture with two non-equivalent formula units (Z' = 2). The compound exhibits a see-saw coordination geometry around Pd(ii), stabilized through a network of hydrogen bonds, π-π stacking, and halogen-halogen interactions, which collectively enhance its structural robustness and functional properties. Beyond its architectural novelty, the material demonstrated excellent catalytic activity as a cathodic modifier in a Boron-Doped Diamond (BDD)-assisted electro-Fenton system for paraquat degradation. The hybrid-modified electrode significantly accelerated the degradation process, achieving near-complete mineralization under optimized conditions. This study highlights the potential of (C9H8N)[PdCl3(H2O)] as a multifunctional material that bridges structural design with environmental application, offering valuable insights into the development of advanced hybrid perovskites for sustainable pollutant remediation.
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