PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
August 26, 2025Advanced Materials23 citations

Pd Single‐Atoms Doped Cu3P Quantum Dots with Moderately Optimized H* Sorption Behaviors for Actualizing the Multifunctional “Formaldehyde‐Nitrate” Galvanic System

View Full Paper
RJRida JavedBZBin ZhaoZZZulakha Zafar

Key Points

  • Optimized H* sorption enables simultaneous high activity in nitrate reduction and formaldehyde oxidation, producing ammonia and hydrogen.
  • Nitrate reduction showcases a very positive onset potential of +0.36 V with a faradaic efficiency of 99% for ammonia at −0.3 V.
  • The self-powered galvanic system integrates these reactions, yielding an open-circuit voltage of 0.892 V and a peak power density of 12.1 mW cm−2.
  • This technology can potentially reduce hazardous wastes while generating usable electrical energy, highlighting its industrial relevance.

Abstract

Abstract Nitrate and formaldehyde, which are substantial wastes in industrial and agricultural effluents, pose significant hazards to the human health and ecosystem. Current purification technologies remain great challenges due to the unsatisfactory energy‐intensive, time‐consuming and noticeably costly reasons. Herein, a bifunctional electrocatalysts of Pd single‐atoms doped Cu 3 P quantum dots (Pd‐Cu 3 P SA‐QDs) are reported to moderately optimize the H* sorption behaviors for accelerating the kinetics of nitrate reduction (NO 3 RR) and formaldehyde oxidation (FOR) reactions in a dual‐directional way, thus realizing the high activity and selectivity for both cathodic ammonia (NH 3 ) synthesis and anodic H 2 production concurrently. Specifically, a very positive onset potential of +0.36 V (versus RHE) is recorded for NO 3 RR with a high faradaic efficiency (FE) of 99 % for NH 3 at −0.3V (versus RHE), while the FOR can be initialized at a very low onset potential of −0.07 V (versus RHE) with > 90 % FE for formate and > 95 % FE for H 2 at 0.3 V (versus RHE). Notably, a self‐powered galvanic system can be triggered by integrating the above two electrode‐based reactions, thus exhibiting an open‐circuit voltage of 0.892 V, a peak power density of 12.1 mW cm −2 , and capable of generating 8.8 KWh kg −1 of electrical energy.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Javed et al. (2025) studied this question.

synapsesocial.com/papers/68af63d7ad7bf08b1eae3b0dhttps://doi.org/10.1002/adma.202512332
Ask AI
Helpful
Bookmark
Share
View Full Paper