2D Materials Beyond Post‐AI Era: Smart Fibers, Soft Robotics, and Single Atom Catalysts

Author:

Lee Gang San12,Kim Jin Goo12,Kim Jun Tae12,Lee Chan Woo12,Cha Sujin12,Choi Go Bong12,Lim Joonwon34,Padmajan Sasikala Suchithra12,Kim Sang Ouk125ORCID

Affiliation:

1. National Creative Research Initiative Center for Multi‐Dimensional Directed Nanoscale Assembly Department of Materials Science and Engineering KAIST Daejeon 34141 Republic of Korea

2. KAIST Institute for Nanocentry KAIST Daejeon 34141 Republic of Korea

3. Department of Information Display Kyung Hee University Seoul 02447 Republic of Korea

4. KHU‐KIST Department of Converging Science and Technology Kyung Hee University Seoul 02447 Republic of Korea

5. Materials Creation Seoul 06179 Republic of Korea

Abstract

AbstractRecent consecutive discoveries of various 2D materials have triggered significant scientific and technological interests owing to their exceptional material properties, originally stemming from 2D confined geometry. Ever‐expanding library of 2D materials can provide ideal solutions to critical challenges facing in current technological trend of the fourth industrial revolution. Moreover, chemical modification of 2D materials to customize their physical/chemical properties can satisfy the broad spectrum of different specific requirements across diverse application areas. This review focuses on three particular emerging application areas of 2D materials: smart fibers, soft robotics, and single atom catalysts (SACs), which hold immense potentials for academic and technological advancements in the post‐artificial intelligence (AI) era. Smart fibers showcase unconventional functionalities including healthcare/environmental monitoring, energy storage/harvesting, and antipathogenic protection in the forms of wearable fibers and textiles. Soft robotics aligns with future trend to overcome longstanding limitations of hard‐material based mechanics by introducing soft actuators and sensors. SACs are widely useful in energy storage/conversion and environmental management, principally contributing to low carbon footprint for sustainable post‐AI era. Significance and unique values of 2D materials in these emerging applications are highlighted, where the research group has devoted research efforts for more than a decade.

Funder

National Research Foundation of Korea

Publisher

Wiley

Subject

Mechanical Engineering,Mechanics of Materials,General Materials Science

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