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Creation of novel composite: Flexible magnetic and conductive muscovite
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Creation of novel composite: Flexible magnetic and conductive muscovite

Yi-Cheng Chen, Yu-Cheng Cheng, Wei-En Ke, Bo-Sheng Chen, Chang-Yang Kuo, Tzu-Yi Yang, Yu-Lun Chueh, Ya-Jing Hu, Jiunn-Yuan LinYing-Hao Chu
Materials today advances, 卷.20, 100423
01/12/2023
Web of Science ID: WOS:001087550100001

摘要

Materials Science, Multidisciplinary Science & Technology Materials Science Technology
The advancement of flexible technology, such as wearable devices, foldable mobile, and automobiles, has entered a new era. Recently, MICAtronics using flexible muscovite carriers has been introduced as a novel area for flexible technology. The muscovite substrate addresses challenges such as thermal budget and chemical stability, offering outstanding environmental stability and an alternative approach to the prevalent polymer based soft technology. However, the role of muscovite in these studies has been limited to serving as substrates. We expand the scope of muscovite applications by proposing a new form called "intercalated muscovite." In this study, we insert transition metal ions, creating a novel layout of muscovite substrates. Subsequent heat treatment and controlled atmospheres can generate various forms of inserted species. These intercalated systems reveal new physical properties of muscovite substrates, offering a fresh avenue for MICAtronics.

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https://doi.org/10.1016/j.mtadv.2023.100423檢視
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