Pulsed-UV illumination on graphene oxide: a new strategy in photocatalytic synthesis of electrocatalysts to control the structural and electrochemical properties

Hanghmoradi, Navid and Sarı, Zahide Tuğba and Öztürk, Emre Utku and Peri, Siddhartha and Abdolhosseinzadeh, Sina and Yarar Kaplan, Begüm and Alkan Gürsel, Selmiye (2022) Pulsed-UV illumination on graphene oxide: a new strategy in photocatalytic synthesis of electrocatalysts to control the structural and electrochemical properties. International Journal of Energy Research, 46 (4). pp. 5200-5214. ISSN 0363-907X (Print) 1099-114X (Online)

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Abstract

This study demonstrated the capability of a novel method in controlling the structural and electrochemical properties of electrocatalysts, utilizing a pulsed-ultraviolet (UV) setup for the synthesis procedure. A hand-made reactor provided a new set of parameters. The variation of UVon and UVoff periods resulted in samples with a range of different structures, compositions, and activities. Graphene/Pt was prepared with varying forms of illumination pulse, and its hydrogen oxidation and oxygen reduction reaction performances were evaluated. Controlling the reduction degree of Pt ions on partially reduced graphene oxide was achieved by manipulating the setup design. The results revealed a dominant growth and agglomeration phase of Pt particles, mostly with metallic states, by increasing both UVon and Uoff time spontaneously. Long UVon without adequate UVoff did not result in promising electrocatalytic activities. In other words, different structures, compositions, and activities of samples suggested that not just the illumination is the crucial factor, it is also the resting time or UVoff which determines the surface adsorption kinetics, nucleation sites, and growth mechanism of nanoparticles. Further chemical reduction by highly concentrated ascorbic acid was used to confirm the proposed mechanisms, which lead to samples even with more metallic Pt (Pt0).
Item Type: Article
Uncontrolled Keywords: nucleation; partially reduced graphene oxide; photocatalyst; platinum oxidation state; pulsed UV
Divisions: Faculty of Engineering and Natural Sciences
Sabancı University Nanotechnology Research and Application Center
Depositing User: Selmiye Alkan Gürsel
Date Deposited: 27 Aug 2022 13:19
Last Modified: 27 Aug 2022 13:19
URI: https://research.sabanciuniv.edu/id/eprint/43881

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