The Need for Smart Materials in an Expanding Smart World: MXene-Based Wearable Electronics and Their Advantageous Applications

被引:33
作者
Amani, Ali Mohammad [1 ]
Tayebi, Lobat [2 ]
Abbasi, Milad [1 ]
Vaez, Ahmad [3 ]
Kamyab, Hesam [4 ,5 ,6 ]
Chelliapan, Shreeshivadasan [7 ]
Vafa, Ehsan [1 ]
机构
[1] Shiraz Univ Med Sci, Sch Adv Med Sci & Technol, Dept Med Nanotechnol, Shiraz 71348, Iran
[2] Marquette Univ, Sch Dent, Milwaukee, WI 53233 USA
[3] Shiraz Univ Med Sci, Sch Adv Med Sci & Technol, Dept Tissue Engn & Appl Cell Sci, Shiraz 71348, Iran
[4] Univ UTE, Fac Arquitectura & Urbanismo, Quito 170147, Ecuador
[5] Saveetha Inst Med & Tech Sci, Saveetha Dent Coll & Hosp, Dept Biomat, Chennai 600077, India
[6] Univ Teknol Malaysia, Malaysia Japan Int Inst Technol, Jalan Sultan Yahya Petra, Kuala Lumpur 54100, Malaysia
[7] Univ Teknol Malaysia, Razak Fac Technol & Informat, Engn Dept, Jalan Sultan Yahya Petra, Kuala Lumpur 54100, Malaysia
关键词
FLEXIBLE ENERGY-STORAGE; TI3C2TX MXENE; MECHANICAL-PROPERTIES; RECENT PROGRESS; GRAPHENE; SENSORS; FILMS; NANOMATERIALS; NANOCOMPOSITES; INTERFACES;
D O I
10.1021/acsomega.3c06590
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
As a result of the transformation of inflexible electronic structures into flexible and stretchy devices, wearable electronics now provide great advantages in a variety of fields, including mobile healthcare sensing and monitoring, human-machine interfaces, portable energy storage and harvesting, and more. Because of their enriched surface functionalities, large surface area, and high electrical conductivity, transition metal nitrides and carbides (also known as MXenes) have recently come to be extensively considered as a group of functioning two-dimensional nanomaterials as well as exceptional fundamental elements for forming flexible electronics devices. This Review discusses the most recent advancements that have been made in the field of MXene-enabled flexible electronics for wearable electronics. The emphasis is placed on extensively established nonstructural features in order to highlight some MXene-enabled electrical devices that were constructed on a nanometric scale. These attributes include devices configured in three dimensions: printed materials, bioinspired structures, and textile and planar substrates. In addition, sample applications in electromagnetic interference (EMI) shielding, energy, healthcare, and humanoid control of machinery illustrate the exceptional development of these nanodevices. The increasing potential of MXene nanoparticles as a new area in next-generation wearable electronic technologies is projected in this Review. The design challenges associated with these electronic devices are also discussed, and possible solutions are presented.
引用
收藏
页码:3123 / 3142
页数:20
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