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用于实际应用的基于MXene的织物电子器件的结构设计及影响因素。

Architectural design and affecting factors of MXene-based textronics for real-world application.

作者信息

Repon Md Reazuddin, Mikučionienė Daiva, Paul Tamal Krishna, Al-Humaidi Jehan Y, Rahman Mohammed M, Islam Tarekul, Shukhratov Sharof

机构信息

Department of Textile Engineering, Daffodil International University Dhaka-1216 Bangladesh

Department of Bioproducts and Biosystems, School of Chemical Engineering, Aalto University 02150 Espoo Finland.

出版信息

RSC Adv. 2024 May 20;14(23):16093-16116. doi: 10.1039/d4ra01820f. eCollection 2024 May 15.

Abstract

Today, textile-based wearable electronic devices (textronics) have been developed by taking advantage of nanotechnology and textile substrates. Textile substrates offer flexibility, air permeability, breathability, and wearability, whereas, using nanomaterials offers numerous functional properties, like electrical conductivity, hydrophobicity, touch sensitivity, self-healing properties, joule heating properties, and many more. For these reasons, textronics have been extensively used in many applications. Recently, new emerging two-dimensional (2D) transition metal carbide and nitride, known as MXene, nanomaterials have been highly considered for developing textronics because the surface functional groups and hydrophilicity of MXene nanoflakes allow the facile fabrication of MXene-based textronics. In addition, MXene nanosheets possess excellent electroconductivity and mechanical properties as well as large surface area, which also give numerous opportunities to develop novel functional MXene/textile-based wearable electronic devices. Therefore, this review summarizes the recent advancements in the architectural design of MXene-based textronics, like fiber, yarn, and fabric. Regarding the fabrication of MXene/textile composites, numerous factors affect the functional properties ( fabric structure, MXene size, ). All the crucial affecting parameters, which should be chosen carefully during the fabrication process, are critically discussed here. Next, the recent applications of MXene-based textronics in supercapacitors, thermotherapy, and sensors are elaborately delineated. Finally, the existing challenges and future scopes associated with the development of MXene-based textronics are presented.

摘要

如今,基于纺织品的可穿戴电子设备(纺织电子器件)已借助纳米技术和纺织基材得以开发。纺织基材具有柔韧性、透气性、透湿性和可穿戴性,而使用纳米材料则能赋予众多功能特性,如导电性、疏水性、触感灵敏度、自愈特性、焦耳热特性等等。基于这些原因,纺织电子器件已在诸多应用中得到广泛使用。近来,新型二维(2D)过渡金属碳化物和氮化物,即MXene纳米材料,在开发纺织电子器件方面受到高度关注,因为MXene纳米片的表面官能团和亲水性有利于便捷地制造基于MXene的纺织电子器件。此外,MXene纳米片具有优异的导电性和机械性能以及较大的表面积,这也为开发新型功能性MXene/纺织品基可穿戴电子设备提供了诸多机会。因此,本综述总结了基于MXene的纺织电子器件在结构设计方面的最新进展,如纤维、纱线和织物。关于MXene/纺织品复合材料的制备,众多因素会影响其功能特性(织物结构、MXene尺寸等)。本文将对在制备过程中应谨慎选择的所有关键影响参数进行批判性讨论。接下来,将详细阐述基于MXene的纺织电子器件在超级电容器、热疗和传感器方面的最新应用。最后,介绍了与基于MXene的纺织电子器件开发相关的现有挑战和未来发展前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/96a5/11103351/212c435e0834/d4ra01820f-f1.jpg

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