
JADE CHEMICAL SL
Functionized 2D Ti₃C₂ MXene
Ti₃C₂ is one of the most representative and significant members of the 2D MXene family, demonstrating exceptional potential in diverse fields such as energy storage, electromagnetic interference (EMI) shielding and absorption, and advanced electronic applications. Structurally, Ti₃C₂ consists of three key functional atomic sites: Ti, C, and surface termination layers, which collectively enable its unique physical and chemical properties.
In our project, we have successfully synthesized functionalized Ti₃C₂ materials tailored for specific applications through precise atomic-level engineering, including doping, substitution, and vacancy modulation. These strategies not only expand the versatility of Ti₃C₂ but also allow us to systematically tune its electronic, optical, and structural characteristics to meet the requirements of different technologies.
A major innovation of our work lies in bridging fundamental research with scalable practice. We have made substantial progress in the large-scale production of functionalized Ti₃C₂, addressing a key bottleneck in MXene commercialization. This advancement contributes significantly to both theoretical understanding and practical deployment in areas such as charge storage, superconductivity, EMI shielding and absorption, and optoelectronic transitions.
Our results demonstrate that by combining advanced atomic engineering with scalable synthesis, Ti₃C₂-based materials can evolve from laboratory research into industrial solutions, paving the way for next-generation technologies in energy, electronics, and communications.
Applications:
1. Energy Storage (Lithium-ion batteries, Sodium-ion batteries, Supercapacitors)
2.Electromagnetic Shielding & Absorbing Materials (EMI Shielding & Absorbers)
3.Electronics & Optoelectronic Devices (Sensors, Field-Effect Transistors, Photoelectric Conversion)
4.Superconductivity & Quantum Materials

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