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February 12, 2026Nanoscale Advances2 citationsOpen Access

Mo2TiC2/WSe2 Nanoarchitectures: In-situ Grown Nanoflowers for Efficient Hydrogen Electrocatalysis

AKAntonia KagkouraSSSergii SergiienkoAPAnastasios V. Papavasileiou

Key Points

  • The aim is to enhance hydrogen electrocatalysis by combining Mo₂TiC₂ MXene with WSe₂ nanoflowers.
  • Interfaced conductive Mo₂TiC₂ MXene with catalytic WSe₂ nanoflowers.
  • Utilized in-situ growth techniques to form nanoflowers.
  • Evaluated electrocatalytic performance for hydrogen evolution.
  • Achieved efficient hydrogen evolution rates.
  • Demonstrated improved conductivity in the hybrid system.
  • Indicated enhanced catalytic activity due to the nanoflower structure.

Abstract

The combination of 2D materials provides a powerful strategy to enhance electrocatalytic hydrogen evolution. Efficient hydrogen electrocatalysis is achieved by interfacing conductive Mo₂TiC₂ MXene with catalytic WSe₂ nanoflowers via a...

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Cite This Study

Kagkoura et al. (2026) studied this question.

synapsesocial.com/papers/698d6f0d5be6419ac0d5513ahttps://doi.org/10.1039/d5na01182e
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