About this Abstract |
Meeting |
2025 TMS Annual Meeting & Exhibition
|
Symposium
|
Advances in Ceramic Materials and Processing
|
Presentation Title |
Advances in Synthesis, Assembly, and Performance of MXenes for Energy Storage Applications |
Author(s) |
Majid Beidaghi |
On-Site Speaker (Planned) |
Majid Beidaghi |
Abstract Scope |
Recent advances in 2D MXenes have highlighted their unique physical, chemical, and electrochemical properties, opening new avenues in materials science. Our research focuses on optimizing synthesis and assembly techniques to enhance MXene performance in various applications. MXenes exhibit exceptional electrical conductivity and electrochemical properties, making them promising electrode materials for energy storage devices. Our studies show that synthesis conditions significantly affect MXenes’ morphology, defect concentrations, and surface chemistry, impacting their performance. We emphasize how controlled defect introduction during synthesis can improve mechanical properties and capacitive performance. Additionally, assembling MXene flakes into heterostructures enhances their capacitive and mechanical robustness. Standardized synthesis protocols are crucial for consistent MXene properties and reliable performance. We discuss innovative synthesis and assembly strategies aimed at fine-tuning MXenes’ electrochemical properties and mechanical stability, concluding with insights into the stability of defected and heterolayered MXenes. |
Proceedings Inclusion? |
Planned: |
Keywords |
Ceramics, Energy Conversion and Storage, |