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Si-Substituted MAX Phases and In-Situ Formation of Si-coated MXene Composites via Chlorosilane Etching
Xudong Wang, Qian Fang, Mian Li +2
Silicon-based MAX phases are a promising class of layered ceramics with superior thermal and chemical stability. However, their synthesis remains challenging due to inherent thermo…
Sublayers Editing of Covalent MAX Phase for Nanolaminated Early Transition Metal Compounds
Ziqian Li, Ke Chen, Xudong Wang +8
Two-dimensional transition metal carbides and nitrides (MXenes) have gained popularity in fields such as energy storage, catalysis, and electromagnetic interference due to their di…
Semiconductive and Ferromagnetic Lanthanide MXenes Derived from Carbon Intercalated Two-dimensional Halides
Qian Fang, Liming Wang, Kai Chang +6
Two-dimensional (2D) magnetic semiconductors are a key focus in developing next-generation information storage technologies. MXenes, as emerging 2D early transition metal carbides…
Molten salt synthesis of a nanolaminated Sc2SnC MAX Phase
Youbing Li, Yanqing Qin, Ke Chen +8
The MAX phases are a family of of ternary layered material with both metal and ceramic properties, and it is also precursor ma-terials for synthesis of two-dimensional MXenes. The…
Halogenated MXenes with Electrochemically Active Terminals for High Performance Zinc Ion Batteries
Mian Li, XinLiang Li, Guifang Qin +12
The class of two-dimensional metal carbides and nitrides known as MXenes offer a distinct manner of property tailoring for a wide range of applications. The ability to tune the sur…
The role of Hume-Rothery's rules play in the MAX phases formability
Yiming Zhang, Zeyu Mao, Qi Han +5
MAX phases are a family of layered, hexagonal-structure ternary carbides or nitrides of a transitional metal and an A-group element. What makes this type of material fascinating an…