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A comprehensive overview of the synthesis of high-quality MXenes:
In Transition Metal Carbides and Nitrides (MXenes) Handbook: Synthesis, Processing, Properties and Applications,a team of esteemed researchers provides an expert review encompassing the fundamentals of precursor selection, MXene synthesis, characterizations, properties, processing, and applications. You'll find detailed discussions of the selection of MXene members for specific applications, as along with summaries of the physical and chemical properties of MXenes, including electrical, mechanical, optical, electromechanical, electrochemical, and electromagnetic properties.
The authors delve into both successful and unsuccessful synthesis examples, offering detailed explanations of various failures to facilitates a comprehensive understanding of the reasons behind unsuccessful syntheses. Additionally, they provide detailed examinations on the characterizations of MXenes, empowering readers to develop a sophisticated understanding of how to achieve optimal quality, flake size, oxidation states, and more. You'll also find.
A thorough review of common applications of MXenes, including electrochemical applications, electromagnetic interference shielding, communications devices, and more.
Comprehensive explorations of solution and non-solution processing of MXenes.
Practical discussions of the synthesis of high-quality MXene powders, colloidal solutions and flakes, including information about MXene precursors.
Fulsome treatments of MXene precursor selection and their impact on MXene quality.
Tailored to meet the needs of graduate students, researchers, and scientists in the areas of materials science, inorganic chemistry, and physical chemistry, theTransition Metal Carbides and Nitrides (MXenes) Handbookwill also benefit biochemists and professionals working in drug delivery.
Introduction to the MXene Handbook
Synthesis of MXene Precursors – Tips and Tricks
Guidelines on Fluorine-based Synthesis of MXenes
Guidelines Low-temperature (LT) F-free Synthesis of MXenes
Guidelines for the Molten Salt Etching of MXenes
Guidelines on the Intercalation of Ions and Molecules in MXenes
MXene Thermal and Chemical Stability and Degradation Mechanism
Guidelines on MXene Handling and Storage Strategies
Beyond Single-M MXenes: Synthesis, Properties, and Applications
Structural Confirmation and Morphological Investigation of MXenes
MXene Surface Terminations
Delamination and Surface Functionalization of MXenes
Solution Processing of MXenes for Printing, Wet Coating, and 2D Film Formation
Three-Dimensional (3D) Printing of MXenes
Assembling of MXenes from Liquid to Solid, Including Liquid Crystals, Fibers
Insights into the Properties of MXenes and MXene Analogs from Atomistic Simulation
MXenes’ Optical and Optoelectronic Properties and Related Applications
Mechanical Properties and Reinforcement Effect of Single MXene Flakes and MXene Composites
MXene Capacitive Behaviors and Supercapacitor Devices
MXene Application in Lithium-Ion Batteries
MXenes in Rechargeable Batteries Beyond Li-Ion Battery
Electromagnetic Interference Shielding of MXene/Polymer Composites
MXenes in Electronics and Communication Devices
MXene in Sensing Devices
MXenes for Environmental Treatments
MXenes in Healthcare Technologies