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المؤلفIbrahim, Yassmin
المؤلفMohamed , Ahmed
المؤلفAbdelgawad, Ahmed M.
المؤلفEid, Kamel
المؤلفAbdullah, Aboubakr M.
المؤلفElzatahry, Ahmed
تاريخ الإتاحة2022-05-22T09:12:24Z
تاريخ النشر2020
اسم المنشورNanomaterials
المصدرScopus
المعرّفhttp://dx.doi.org/10.3390/nano10101916
معرّف المصادر الموحدhttp://hdl.handle.net/10576/31358
الملخصMXenes have emerged as promising materials for various mechanical applications due to their outstanding physicochemical merits, multilayered structures, excellent strength, flexibility, and electrical conductivity. Despite the substantial progress achieved in the rational design of MXenes nanostructures, the tutorial reviews on the mechanical properties of self-standing MXenes were not yet reported to our knowledge. Thus, it is essential to provide timely updates of the mechanical properties of MXenes, due to the explosion of publications in this filed. In pursuit of this aim, this review is dedicated to highlighting the recent advances in the rational design of self-standing MXene with unique mechanical properties for various applications. This includes elastic properties, ideal strengths, bending rigidity, adhesion, and sliding resistance theoretically as well as experimentally supported with various representative paradigms. Meanwhile, the mechanical properties of self-standing MXenes were compared with hybrid MXenes and various 2D materials. Then, the utilization of MXenes as supercapacitors for energy storage is also discussed. This review can provide a roadmap for the scientists to tailor the mechanical properties of MXene-based materials for the new generations of energy and sensor devices. 2020 by the authors. Licensee MDPI, Basel, Switzerland.
اللغةen
الناشرMDPI AG
الموضوع2D materials
Mechanical properties
Metal carbide
MXene
Supercapacitors
Young modules
العنوانThe recent advances in the mechanical properties of self-standing two-dimensional MXene-based nanostructures: Deep insights into the supercapacitor
النوعArticle
الصفحات27-Jan
رقم العدد10
رقم المجلد10
dc.accessType Open Access


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