Nature's Blueprint in Bioinspired Materials for Robotics

Author:

Roh Yeonwook1,Lee Youngseok2,Lim Daseul1,Gong Dohyeon1,Hwang Suhyeon1,Kang Minji1,Kim Dohyung2,Cho Junggwang1,Kwon Gibeom1,Kang Daeshik1,Han Seungyong1,Ko Seung Hwan23ORCID

Affiliation:

1. Multiscale BIo‐inspired Technology Lab Department of Mechanical Engineering Ajou University Suwon 16499 Republic of Korea

2. Applied Nano and Thermal Science Lab Department of Mechanical Engineering Seoul National University 1 Gwanak‐ro, Gwanak‐gu Seoul 08826 South Korea

3. Institute of Advanced Machinery and Design (SNU‐IAMD) Seoul National University Gwanak‐ro, Gwanak‐gu Seoul 08826 South Korea

Abstract

AbstractSoft robotics, an emerging field that focuses on the development of robots utilizing soft, flexible, and deformable materials, is revolutionizing traditional robotics (reliant on rigid materials and motors) and broadening its range of applications and potential uses. In addition, by emulating the structure, function, and characteristics of biological systems, bioinspired materials are facilitating significant progress in a diverse array of soft robotic applications. This review offers an overview of bioinspired materials employed in soft robotics, exploring their potential applications, challenges, and future research directions. For an intuitive understanding, soft robots based on the primary abilities required and the habitats (terrestrial, aquatic, aerial) of the animals and plants they mimic are categorized. Furthermore, real‐world applications of developed soft robots in everyday human life are presented. The novel category classification and comprehensive analysis presented in this review provide insights into the development of soft robotic systems with the potential to transform various industries and enhance quality of life.

Funder

National Research Foundation of Korea

Publisher

Wiley

Subject

Electrochemistry,Condensed Matter Physics,Biomaterials,Electronic, Optical and Magnetic Materials

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