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◆ Chemical Engineering Journal Green and Sustainable2026-03-19· Overpotential

Synergistic charge Ti₃CNTₓ@graphene nanoplatelets bi-functional catalyst for efficient water splitting and photocatalytic dyes and antibiotic removal

Farkhanda Saba, Imran Haider Sajid, Iftikhar Ali, S. Irfan, Muhammad Yousaf, Syed Rizwan

原始摘要(英文原文)· Original abstract
Catalytic activity is studied as a potential remedy for environmental pollution issues caused by industrial contaminants. This work successfully synthesized a novel Ti 3 CNT x @Graphene Nanoplatelets (GNPs) composite catalyst prepared using a liquid-phase method for degradation of organic dye as well as pharmaceutical residuals due to enhanced charge carrier production due to conductive GNPs support. As a photocatalyst, Ti 3 CNT x @GNPs achieved nearly 100% Methylene orange degradation with significantly increased reaction rates up to 0.05576 min −1 within 120 min under visible light exposure. When exposed to visible light, the Ti 3 CNT x @GNPs composite degraded 75.1% levofloxacin (LEVO) in 20 min, surpassing its activity against Ciprofloxacin (CIP) of 85.5% in 100 min. With low Tafel slopes and overpotential values of 120 mV/dec and 134 mV for oxygen evolution reaction (OER) while 159 mV/dec and 241 mV for hydrogen evolution reaction (HER), Ti 3 CNT x @GNPs demonstrated effective OER and HER activities at 10 mA cm −2 of current density. The bifunctional catalytic capability of Ti 3 CNT x @GNPs for total water splitting is demonstrated by these results. Ti 3 CNT x @GNPs composite exhibits remarkable water-splitting characteristics and can successfully degrade dyes and antibiotics, making it a promising candidate for energy along with environmental remediation activities.
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Synergistic charge Ti₃CNTₓ@graphene nanoplatelets bi-functional catalyst for efficient water splitting and photocatalytic dyes and antibiotic removal — 科研速览 Science Skim