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

Md. Shahinoor AlamDepartment of Mechanical Engineering, Dhaka University of Engineering and Technology, Gazipur-1707, Dhaka, BangladeshMohammad Asaduzzaman ChowdhuryDepartment of Mechanical Engineering, Dhaka University of Engineering and Technology, Gazipur-1707, Dhaka, BangladeshTasmina KhandakerDepartment of Chemistry, Bangladesh Army University of Engineering and Technology, Qadirabad Cantonment, Natore-6431, BangladeshMuhammad Sarwar HossainChemistry Discipline, Khulna University, Khulna-9208, BangladeshMd. Saiful IslamDepartment of Chemistry, Bangladesh Army University of Engineering and Technology, Qadirabad Cantonment, Natore-6431, BangladeshMd. Moynul IslamDepartment of Chemistry, Bangladesh Army University of Engineering and Technology, Qadirabad Cantonment, Natore-6431, BangladeshMd. Kamrul HasanChemistry Discipline, Khulna University, Khulna-9208, Bangladesh
2024en
ABI

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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.

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