About this Abstract |
| Meeting |
2027 TMS Annual Meeting & Exhibition
|
| Symposium
|
2D Materials – Preparation, Properties, Modeling & Applications
|
| Presentation Title |
Architected 3D Materials from 2D Nanosheets and Magnetic Nanocomposites for Advanced Energy, Electronic, and Soft Robotic Systems |
| Author(s) |
Mert Arslanoglu, Swastik Kushagr, Burak Ozdoganlar, Rahul Panat |
| On-Site Speaker (Planned) |
Rahul Panat |
| Abstract Scope |
Transforming low-dimensional nanomaterials into three-dimensional (3D) architectures enables functionalities unattainable with conventional planar devices. We present multiple approaches for organizing 2D nanosheets and nanoparticles into architected 3D systems for energy, electronics, and soft robotics. First, Aerosol Jet nanoprinting is used to assemble Ti₃C₂Tₓ MXene nanosheets into freestanding and supported 3D microarchitectures with high aspect ratios, ~10 μm resolution, and excellent geometric control. These structures provide a platform for high-performance microelectronic and wearable healthcare devices. Second, freeze casting followed by MXene infiltration creates hierarchical porous silica/MXene networks. Supercapacitors based on these architectures achieve areal capacitance of 7.24 F cm⁻˛ and energy density of 0.32 mWh cm⁻˛ with only a 6% MXene mass addition. Finally, magnetic nanoparticles embedded in PDMS are used to create remotely actuated soft structures for soft robotics and biomedical devices. Together, these approaches establish versatile pathways for architected multifunctional materials and devices. |
| Proceedings Inclusion? |
Planned: |
| Keywords |
Additive Manufacturing, Magnetic Materials, Energy Conversion and Storage |