Photoelectrochemical properties of Cu2O/PANI/Si-based photocathodes for CO2 conversion

Author:

Talbi Lamia1,Bozetine Isma1,Boussaa Sabiha Anas1,Benfadel Karima1,Allam Djaouida2,Rahim Nesrine1,Mohamed Yasmine Ould1,Leitgeb Markus3,Torki Chaima1,Hocine Smain3,Boudeffar Fatima1,Manseri Amar1,Kaci Samira1

Affiliation:

1. Couches Minces, Surfaces et Interfaces, Research Center in Semiconductor Technology for Energetic, Algiers, Algeria

2. Laboratory of Applied Chemistry and Chemical Engineering, Sciences Faculty, University Mouloud Mammeri of Tizi Ouzou, Tizi Ouzou, Algeria

3. Institute of Sensor and Actuator Systems, TU Wien, Vienna, Austria

Abstract

The present study was aimed at converting carbon dioxide (CO2) into value-added products such as methanol, which can provide not only a potential solution for controlling the carbon dioxide concentration level in the atmosphere but also can offer an alternative approach for the production of renewable energy sources. From this perspective, various hybrid photoelectrocatalysts were synthesized, characterized and used as photocathodes for photoelectrochemical (PEC) reduction of carbon dioxide to methanol in an aqueous medium under visible light irradiation. Flat silicon (Si) and pyramidal textured silicon (SiPY) substrates, covered with polyaniline (PANI) with or without sensitization with copper (I) oxide (Cu2O) particles, were investigated. It was observed that the combination of PANI and copper (I) oxide greatly increased PEC carbon dioxide reduction to methanol owing to the enhancement in the carbon dioxide chemisorption capacity by the photocathode surface and at the same time facilitated the separation of photogenerated electron–hole (e/h+) pairs. The PEC results demonstrated that the applied potential impacts the photocurrent stability. Sensitization with copper (I) oxide effectively separated the photogenerated e/h+ pairs and, therefore, enhanced the PEC carbon dioxide reduction activity of the hybrid photocatalyst. The best faradaic efficiency for methanol formation reached 57.66%, which was recorded when the copper (I) oxide/PANI/SiPY heterostructure was used as a photocathode at an applied potential of −1.2 V against the saturated calomel electrode.

Publisher

Thomas Telford Ltd.

Subject

Condensed Matter Physics,General Materials Science

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