碳化物
订单(交换)
熵(时间箭头)
过渡(遗传学)
材料科学
凝聚态物理
统计物理学
业务
热力学
物理
冶金
化学
基因
生物化学
财务
作者
Brian C. Wyatt,Yinan Yang,Paweł Piotr Michałowski,Tetiana Parker,Yamilée Morency,Francesca Urban,Givi Kadagishvili,Manushree Tanwar,Sixbert Muhoza,Srinivasa Kartik Nemani,Annabelle Bedford,Hui Fang,Zachary D. Hood,Jae Hoon Jang,Kalpana R. Kamath,Breanne N. Wright,Rebecca Disko,Anupma Thakur,Shin-ichi Kan,Neil Ghosh
标识
DOI:10.26434/chemrxiv-2025-7f2c4
摘要
There is controversy surrounding the moniker “high-entropy” materials due to the unclear effect of entropy and enthalpy. The unique nanolayered structure of MAX phases, with its structural covalent-metallic-covalent carbide interfaces, allowed us to address this controversy systematically. Here, we synthesized nearly 40 known and novel MAX phases containing 2 to 9 metals and found that their enthalpic preference for short-range order remains until entropy increases enough to achieve all configurations of the transition metals in their atomic planes. In addition, we transformed all these MAX phases into two-dimensional (2D) MXenes and showed the effects of the order vs. disorder on their surface properties and electronic behavior. This study indicates that short-range ordering in high-entropy materials determines the impact of entropy vs. enthalpy on their structures and properties.
科研通智能强力驱动
Strongly Powered by AbleSci AI