Extreme Materials

Open access

ISSN: 3050-628X

Extreme Materials

Open access

Editor-in-Chief

ZHOU Yanchun

Editorial Board

Extreme Materials (EM) is a peer-reviewed open access journal. It publishes studies of materials functioning under extreme environments, including those having extreme properties. EM accepts submissio...

Extreme Materials (EM) is a peer-reviewed open access journal. It publishes studies of materials functioning under extreme environments, including those having extreme properties.

EM accepts submissions of original research and reviews, including those on the design, processing, structure-property relationships, performance and life-time prediction of extreme materials from both fundamental and application-oriented perspectives.

The following areas of the science and engineering of materials are of particular interest:

  • Materials for extreme temperature environment

  • Materials for extreme pressure environment

  • Materials for extreme dynamic environment

  • Materials for extreme corrosion environment

  • Materials for extreme irradiation environment

Editorial Board

Society affiliation

INTERNATIONAL SCIENCE ACCELERATOR (ISA) ISA is an enterprise aimed at strengthening international academic exchanges and promoting scientific progress. The recent goal is to launch a series of international academic journals focused on cutting-edge academic fields.

Role of rare earth oxide modification in strengthening ZrB2-SiC composites against oxidation and cyclic ablation

Design of Amorphous/nanocrystalline Turing Structures in ZrO2/C nanofibers for Enhanced Microwave Absorption Performance

Comparative study of water vapor corrosion resistance in directionally solidified RE3Al5O12/Al2O3 eutectic ceramics at 1500℃: Effect of eutectic structure and rare earth elements

View all ScienceDirect

1. Key materials for extreme high-temperature environments: Ultra-high-temperature ceramics and their composites

2. Recent advances in high-entropy ceramics: Design principles, structural characteristics, and emerging properties

3. Advances in ultra-high-temperature ceramic coatings with enhanced oxidation resistance for carbon-based composites

View all ScienceDirect

Stay Informed

Register your interest and receive email alerts tailored to your needs. Sign up below.