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MAX相材料的进展:结构、性能及新应用

Advancements in MAX phase materials: structure, properties, and novel applications.

作者信息

Alam Md Shahinoor, Chowdhury Mohammad Asaduzzaman, Khandaker Tasmina, Hossain Muhammad Sarwar, Islam Md Saiful, Islam Md Moynul, Hasan Md Kamrul

机构信息

Department of Mechanical Engineering, Dhaka University of Engineering and Technology Gazipur-1707 Dhaka Bangladesh

Department of Chemistry, Bangladesh Army University of Engineering and Technology Qadirabad Cantonment Natore-6431 Bangladesh.

出版信息

RSC Adv. 2024 Aug 27;14(37):26995-27041. doi: 10.1039/d4ra03714f. eCollection 2024 Aug 22.

Abstract

The MAX phase represents a diverse class of nanolaminate materials with intriguing properties that have received incredible global research attention because they bridge the divide separating metals and ceramics. Despite the numerous potential applications of MAX phases, their complex structure leads to a scarcity of readily accessible pure MAX phases. As a result, in-depth research on synthesis methods, characteristics, and structure is frequently needed for appropriate application. This review provides a comprehensive understanding of the recent advancements and growth in MAX phases, focusing on their complex crystal structures, unique mechanical, thermal, electrical, crack healing, corrosion-resistant properties, as well as their synthesis methods and applications. The structure of MAX phases including single metal MAX, i-MAX and o-MAX was discussed. Moreover, recent advancements in understanding MAX phase behaviour under extreme conditions and their potential novel applications across various fields, including high-temperature coatings, energy storage, and electrical and thermal conductors, biomedical, nanocomposites, were discussed. Moreover, the synthesis techniques, ranging from bottom-up to top-down methods are scrutinized for their efficacy in tailoring MAX phase properties. Furthermore, the review explores the challenges and opportunities associated with optimizing MAX phase materials for specific applications, such as enhancing their oxidation resistance, tuning their mechanical properties, and exploring their functionality in emerging technologies. Overall, this review aims to provide researchers and engineers with a comprehensive understanding of MAX phase materials and inspire further exploration into their versatile applications in materials science and engineering.

摘要

MAX相代表了一类具有有趣特性的纳米层状材料,因其弥合了金属和陶瓷之间的差距而受到全球范围内的广泛研究关注。尽管MAX相有众多潜在应用,但其复杂结构导致难以获得纯MAX相。因此,为了实现恰当应用,常常需要对其合成方法、特性和结构进行深入研究。本综述全面介绍了MAX相的最新进展和发展情况,重点关注其复杂的晶体结构、独特的机械、热、电、裂纹愈合、耐腐蚀性能,以及合成方法和应用。讨论了MAX相的结构,包括单金属MAX、i-MAX和o-MAX。此外,还讨论了在极端条件下对MAX相行为的最新认识及其在各个领域的潜在新应用,包括高温涂层、能量存储、电气和热导体、生物医学、纳米复合材料等。此外,还对从自下而上到自上而下的合成技术在定制MAX相性能方面进行了有效性审查。此外,本综述探讨了针对特定应用优化MAX相材料所面临的挑战和机遇,例如提高其抗氧化性、调整其机械性能以及探索其在新兴技术中的功能。总体而言,本综述旨在为研究人员和工程师提供对MAX相材料的全面理解,并激发对其在材料科学与工程中广泛应用的进一步探索。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/91a8/11348849/e62d19f193ad/d4ra03714f-f1.jpg

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