About this Abstract |
| Meeting |
2027 TMS Annual Meeting & Exhibition
|
| Symposium
|
2D Materials – Preparation, Properties, Modeling & Applications
|
| Presentation Title |
Hybrid MoS2/MXene Nanostructures as an Advanced Transduction Platform for Electrochemical Applications |
| Author(s) |
Pinky Sagar, Sufian Abedrabbo, Shimaa Eissa |
| On-Site Speaker (Planned) |
Sufian Abedrabbo |
| Abstract Scope |
MoS2 nanostructures were synthesized under three pH conditions (3, 7, and 11) to investigate the influence of growth environment on electrochemical performance. Among the prepared samples, the material obtained at pH 7 exhibited the most favorable electrochemical characteristics, attributed to its balanced nucleation-growth kinetics and improved defect distribution. MoS2 (pH 7) was integrated with MXene, forming a hybrid composite that leveraged the high conductivity of MXene and the catalytic activity of MoS2. Electrochemical studies revealed a synergistic enhancement in charge transfer efficiency and signal amplification, surpassing the responses of MoS2 and MXene used individually. The composite also demonstrated a significantly larger electrochemically active surface area.
The optimized MoS2-MXene hybrid shows strong potential as a versatile material platform for a wide range of advanced electrochemical applications. This work highlights the MoS2-MXene composite as a promising candidate for multifunctional electrochemical systems, offering a strong foundation for developments in high‑performance device engineering. |
| Proceedings Inclusion? |
Planned: |
| Keywords |
Composites, Characterization, Surface Modification and Coatings |