Journal Article

·2024 OPEN ACCESS

Metal Phthalocyanine Sensitized Photoelectrochemical Cell Assembling with Azide‐Functionalized Reduced Graphene and Quaternary Metal Chalcogenide Composites

Deniz Ezgi Varol , Özlem Uğuz , Özlem Budak , Bahadır Keskin YTU , Atıf Koca YTU

ChemElectroChem

Abstract

Abstract Here, photoelectrodes of photoelectrochemical (PEC) cells consisting of azide functionalized reduced graphene oxide (GO‐N 3 ) and quaternary metal chalcogenide (CdZnNiSSe) composites sensitized with metal phthalocyanines (MPc, M: Co, Zn, Ti) are developed and then tested in hydrogen evolution reaction (HER). CdZnNiSSe/RGO‐N 3 composite is deposited on an indium tin oxide (ITO) electrode through a facile electrodeposition technique and ITO/CdZnNiSSe/RGO‐N 3 photoelectrode is constructed. Then, MPcs bearing terminal alkyne groups are connected to RGO‐N 3 via the copper(I)‐catalyzed azide‐alkyne cycloaddition (click chemistry) technique to produce ITO/CdZnNiSSe/RGO‐N 3 ‐MPc structures. Decoration of ITO/CdZnNiSSe/RGO‐N 3 with MPcs is proposed to improve the charge transfer capability of the photoelectrode due to wide light absorption of MPcs from UV toward the IR region of the light spectrum. PECHER responses indicate that among the photoanodes bearing ZnPc, CoPc, and TiOPc, ITO/CdZnNiSSe/RGO‐N 3 ‐ZnPc electrode exhibits the highest PECHER performance owing to the suitability of band structure of ZnPc. Sensitizing ITO/CdZnNiSSe/RGO‐N 3 with ZnPc increases the photocurrent density from 5.0 to 7.3 mA cm −2 at 0.8 V vs. RHE and the applied bias photon to current efficiency (ABPE) enhances from 3.18 % to 3.87 %. This study provides a new approach for increasing the performance of photoanodes via sensitization with MPcs in photoelectrochemical hydrogen evolution processes for future applications.

Keywords

Graphene Materials science Photocurrent Oxide Indium tin oxide Azide Chemical engineering Photochemistry Nanotechnology Optoelectronics Chemistry Thin film Organic chemistry Metallurgy

Subject Areas

Advanced Photocatalysis Techniques ·Renewable Energy, Sustainability and the Environment ·Physical Sciences
TiO2 Photocatalysis and Solar Cells ·Renewable Energy, Sustainability and the Environment ·Physical Sciences
Quantum Dots Synthesis And Properties ·Materials Chemistry ·Physical Sciences

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