Synergistic enhancement of solar-driven hydrogen evolution via Ni-doped TiO2–MXene hybrid photocatalyst
Artikel i vetenskaplig tidskrift, 2025

Developing high-efficiency photocatalysts for sustainable hydrogen production is a key priority in solar energy conversion. Here, we present a TiO2-based photocatalyst co-modified with nickel dopants and Ti3C2Tx MXene to improve light absorption, charge separation, and interfacial charge transport. The hybrid material was synthesized via HF etching of Ti3AlC2 MAX phase followed by nickel doping and thermal calcination. Physicochemical characterization (XRD, SEM/TEM, XPS, UV–Vis, PL, FTIR, Raman) confirmed successful integration of TiO2, Ni2+ species, and partially oxidized MXene sheets. Electrochemical impedance spectroscopy (EIS) and transient photocurrent response measurements revealed improved charge mobility and reduced recombination. Among the samples tested, the TiO2–2 % Ni–10 % MXene composite showed the best performance, achieving a hydrogen evolution rate of 47.2 mmol h−1 g−1 and an apparent quantum yield of 5.5 % under UV light. This enhanced activity results from the synergistic effects of Ni doping (introducing shallow traps and promoting proton reduction) and the conductive MXene phase (facilitating charge transfer and providing active sites). The study offers a scalable dual-modification strategy for designing efficient TiO2-based photocatalysts and contributes valuable insights into the rational development of advanced materials for solar-driven hydrogen generation.

MXene

Ni doping

Photocatalysis

Composite

Solar-driven water splitting

TiO2-Based photocatalysts

Författare

Jarosław Serafin

Institut de Nanociencia i Nanotecnologia

Universitat de Barcelona

Xavier Vendrell

Universitat de Barcelona

Bartosz Dziejarski

Chalmers, Rymd-, geo- och miljövetenskap, Energiteknik

Politechnika Wrocławska

Roger Amade-Rovira

Universitat de Barcelona

Institut de Nanociencia i Nanotecnologia

Lourdes Mestres

Universitat de Barcelona

Isabel Serrano

Universitat Politecnica de Catalunya

Jordi Llorca

Universitat Politecnica de Catalunya

International Journal of Hydrogen Energy

0360-3199 (ISSN)

Vol. 179 151722

Ämneskategorier (SSIF 2025)

Materialkemi

Den kondenserade materiens fysik

Fysikalisk kemi

DOI

10.1016/j.ijhydene.2025.151722

Mer information

Senast uppdaterat

2025-10-06