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MAX phases as nanolaminate materials: chemical composition, microstructure, synthesis, properties, and applications
L Fu, W **a - Advanced Engineering Materials, 2021 - Wiley Online Library
In recent years, MAX phases, a family of nanolaminate materials, have garnered
tremendous research interest worldwide, due to the fact that they possess an excellent …
tremendous research interest worldwide, due to the fact that they possess an excellent …
Advancements in MAX phase materials: structure, properties, and novel applications
The MAX phase represents a diverse class of nanolaminate materials with intriguing
properties that have received incredible global research attention because they bridge the …
properties that have received incredible global research attention because they bridge the …
Processing of MAX phases: From synthesis to applications
J Gonzalez‐Julian - Journal of the American Ceramic Society, 2021 - Wiley Online Library
MAX phases are a large family of materials with more than 150 different compositions that
have been extensively investigated during the last 25 years. They present a layered …
have been extensively investigated during the last 25 years. They present a layered …
Waste-to-Wealth Strategy: Ti3AlC2-Max-Supported WS2/Halloysite Nanocomposite for the Removal of Nickel Metal Ions from Wastewater with Machine Learning …
F Mashkoor, SM Adnan, M Shoeb… - … Sustainable Chemistry & …, 2024 - ACS Publications
We proposed an innovative approach employing the “waste-to-wealth” concept,
transforming expended adsorbent into electrode materials for energy storage with a focus on …
transforming expended adsorbent into electrode materials for energy storage with a focus on …
A new strategy for long-term complex oxidation of MAX phases: database generation and oxidation kinetic model establishment with aid of machine learning
Owing to competitive behavior between oxidation products, complex oxidation commonly
exists for MAX phases applied at high temperatures. Two major challenges remain to …
exists for MAX phases applied at high temperatures. Two major challenges remain to …
Nanoarchitectonics of vanadium carbide MXenes for separation and catalytic degradation of contaminants
The search of expeditious materials for selective removal of residual contaminants, is an
imperative task to the scientific community. In this work, we report the use of vanadium …
imperative task to the scientific community. In this work, we report the use of vanadium …
Multifunctional conductive textile for efficient electrothermal conversion and triboelectric nanogenerators
X Yang, C Xu, K Feng, L Yang, S Yin - Composites Communications, 2023 - Elsevier
Integration of sensor, energy harvesting and flexible textile has been considered as a
promising strategy applied in the fields of wearable electrics, artificial intelligence. Herein …
promising strategy applied in the fields of wearable electrics, artificial intelligence. Herein …
Development of Ti2AlN MAX phase/cellulose acetate nanocomposite membrane for removal of dye, protein and lead ions
To our knowledge, this study was carried out because there is no other study using Ti 2 AlN
MAX phase material as an inorganic additive to improve the performance of the cellulose …
MAX phase material as an inorganic additive to improve the performance of the cellulose …
Two dimensional MAX supported copper oxide/nickel Oxide/MAX as an efficient and novel photocatalyst for hydrogen evolution
An innovative 2D MAX structure comprising of Ti 3 AlC 2 multilayers and copper oxide
(CuO)/nickel oxide (NiO)(CN) composite was fabricated via a facile chemical route for …
(CuO)/nickel oxide (NiO)(CN) composite was fabricated via a facile chemical route for …
Early stages of dissolution corrosion in 316L and DIN 1.4970 austenitic stainless steels with and without anticorrosion coatings in static liquid lead-bismuth eutectic …
E Charalampopoulou, K Lambrinou… - Materials …, 2021 - Elsevier
This work addresses the early stages (≤ 1000 h) of the dissolution corrosion behavior of
316L and DIN 1.4970 austenitic stainless steels in contact with oxygen-poor (CO< 10− 8 …
316L and DIN 1.4970 austenitic stainless steels in contact with oxygen-poor (CO< 10− 8 …