Metal Alloy‐Functionalized 3D‐Printed Electrodes for Nitrate‐to‐Ammonia Conversion in Zinc‐Nitrate Batteries

Author:

Liu Si1,Zhao Yupeng12,Chen Zhengfan12,Gao Dandan12,Feng Fan12,Rios‐Studer Tobias2,Bansmann Joachim3,Biskupek Johannes4,Kaiser Ute4,Liu Rongji12,Streb Carsten12ORCID

Affiliation:

1. Institute of Inorganic Chemistry I Ulm University Albert-Einstein-Allee 11 89081 Ulm Germany

2. Department of Chemistry Johannes Gutenberg University Mainz Duesbergweg 10–14 55128 Mainz Germany

3. Institute for Surface Chemistry and Catalysis Ulm University Albert-Einstein-Allee 47 89081 Ulm Germany

4. Central Facility of Electron Microscopy for Materials Science Electron Microscopy Group of Material Science Ulm University Albert-Einstein-Allee 11 89081 Ulm Germany

Abstract

AbstractElectrocatalytic nitrate reduction is a promising approach to remove harmful nitrate and produce ammonia in aqueous media. Here, we demonstrate how 3D printed polymer electrodes can be electroless plated with a bimetallic NiCu alloy film suitable for sustained nitrate‐to‐ammonia reduction. Characterization by powder X‐ray diffraction, X‐ray photoelectron spectroscopy, scanning/transmission electron microscopy and energy‐dispersive X‐ray spectroscopy indicate that the electrode has a two‐layer structure consisting of polymer/ coating layer of metal alloys. The composite electrode shows high‐performance in the nitrate‐to‐ammonia electroreduction, giving NH3 Faradaic efficiencies of up to 83 % and NH3 yield rates up to 860 μg/(h cm2) at −0.38 V vs. RHE. We show that the electrode can easily be integrated into a Zn‐nitrate battery, giving a power density of 3.8 mW cm−2 with continuous NH3 production. The system combines three productive outputs, that is removal of nitrate pollutants, synthesis of valuable ammonia and generation of “green” electricity.

Publisher

Wiley

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