MXene– tag –
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New Technology
Rice University Develops Ultrafast Gas-Phase Etching Process for MXene Manufacturing in 30 Seconds, Reducing Toxic Waste
Electronics Online Australia Overview Rice University researchers have developed an ultrafast gas-phase etching process for manufacturing MXene, completing synthesis within 30 seconds compared to hours for conventional liquid-phase metho... -
New Technology
MDPI Research Demonstrates MXene-Coated Germanium Nanoparticles Enable High-Performance Binder-Free Lithium-Ion Battery Anodes
MDPI Switzerland Overview Recent research published in MDPI demonstrates the development of a high-performance binder-free lithium-ion battery anode utilizing MXene-coated germanium nanoparticles on nickel foam. The MXene coating allevia... -
New Technology
German Journal Small Publishes Review Summarizing Recent Advances of Layered Ti₃C₂Tₓ MXene for Electrochemical Energy Storage
Small (Wiley-VCH) Germany Overview The German scientific journal Small has published a review article summarizing recent advances in Ti₃C₂Tₓ MXene for electrochemical energy storage applications. This comprehensive review covers MXene's ... -
New Technology
UK Team Achieves 73% Capacity Retention in Lithium-Sulfur Batteries After 500 Cycles with LiCl-Modified MXene Nanosheets
The Royal Society of Chemistry UK Overview A UK research team has demonstrated superior performance in lithium-sulfur (Li-S) batteries using intercalation-modified MXene nanosheets as separators. Specifically, a battery incorporating LiC... -
New Technology
Plasma Functionalization Enables Precise Surface Modification of 2D Materials like MXenes, h-BN, and TMDs for High-Performance Materials
ACS Material USA Overview This article details plasma functionalization as a precise, dry, and low-temperature method for engineering the surfaces of 2D materials such as MXenes, h-BN, and TMDs without damaging their lattice structure. T... -
New Technology
MDPI Develops High-Voltage Aqueous Asymmetric Supercapacitor Based on Mo1.33CTx i-MXene and Hydrated V2O5: Achieving 1.7V, 25.2 Wh·kg−1, and 86% Capacitance Retention After 10,000 Cycles
MDPI International Overview A study published in MDPI reports the development of an aqueous asymmetric supercapacitor utilizing ordered-vacancy Mo1.33CTx i-MXene/CNT as the negative electrode and hydrated V2O5·nH2O/CNT as the positive el... -
New Technology
MXene Nanocomposites Achieve High Capacity (75 mAh g-1) and Over 99% Coulombic Efficiency for 100 Cycles in Sodium-Ion Battery Anodes
Voltcoffer International Overview A Zn2GeO4/MXene nanocomposite has been developed as a high-performance anode for next-generation sodium-ion batteries, demonstrating significantly enhanced electrochemical performance. This composite mai... -
New Technology
MXene Hybrid Composites Unlock Superior Multifunctional Performance for Next-Generation Energy Storage
ResearchGate Unknown Overview MXene and its hybrid composites are garnering significant attention for their diverse multifunctional properties, including high conductivity (~2.5 × 10⁶ S/m), large surface area, and exceptional electrochem... -
New Technology
Conductive Polymer Nanocomposites Unlock Advanced EMI Shielding: Materials, Mechanisms, and Applications
RSC Publishing UK Overview Conductive polymer nanocomposites are rapidly advancing as high-performance electromagnetic interference (EMI) shielding materials, leveraging their light weight, flexibility, and tunable electrical properties.... -
New Technology
The 2D Materials Landscape 2026: Innovations and Patent Trends in Graphene, MoS2, h-BN, and MXenes
PatSnap Eureka Singapore Overview This PatSnap Eureka report analyzes the 2D materials landscape in 2026, focusing on key materials such as graphene, molybdenum disulfide (MoS2), hexagonal boron nitride (h-BN), and MXenes. It details the...
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