주요 논문
4
*2026년 기준 최근 6년 이내 논문에 한해 Impact Factor가 표기됩니다.
1
Review
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인용수 35
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2022Advances in Biodegradable Soft Robots
Jiwon Kim, Harim Park, ChangKyu Yoon
IF 5 (2022)
Polymers
Biodegradable soft robots have been proposed for a variety of intelligent applications in soft robotics, flexible electronics, and bionics. Biodegradability offers an extraordinary functional advantage to soft robots for operations accompanying smart shape transformation in response to external stimuli such as heat, pH, and light. This review primarily surveyed the current advanced scientific and engineering strategies for integrating biodegradable materials within stimuli-responsive soft robots. It also focused on the fabrication methodologies of multiscale biodegradable soft robots, and highlighted the role of biodegradable soft robots in enhancing the multifunctional properties of drug delivery capsules, biopsy tools, smart actuators, and sensors. Lastly, the current challenges and perspectives on the future development of intelligent soft robots for operation in real environments were discussed.
https://doi.org/10.3390/polym14214574
Soft robotics
Robot
Computer science
Bionics
Nanotechnology
Artificial intelligence
Engineering
Systems engineering
Materials science
2
Review
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인용수 36
·
20224D Multiscale Origami Soft Robots: A Review
Hyegyo Son, Yunha Park, Youngjin Na, ChangKyu Yoon
IF 5 (2022)
Polymers
Time-dependent shape-transferable soft robots are important for various intelligent applications in flexible electronics and bionics. Four-dimensional (4D) shape changes can offer versatile functional advantages during operations to soft robots that respond to external environmental stimuli, including heat, pH, light, electric, or pneumatic triggers. This review investigates the current advances in multiscale soft robots that can display 4D shape transformations. This review first focuses on material selection to demonstrate 4D origami-driven shape transformations. Second, this review investigates versatile fabrication strategies to form the 4D mechanical structures of soft robots. Third, this review surveys the folding, rolling, bending, and wrinkling mechanisms of soft robots during operation. Fourth, this review highlights the diverse applications of 4D origami-driven soft robots in actuators, sensors, and bionics. Finally, perspectives on future directions and challenges in the development of intelligent soft robots in real operational environments are discussed.
https://doi.org/10.3390/polym14194235
Bionics
Robot
Computer science
Actuator
Soft robotics
Folding (DSP implementation)
Soft materials
Biomimetics
Mechanical engineering
Control engineering
Artificial intelligence
Nanotechnology
Engineering
Materials science
3
Article
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인용수 44
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2020Untethered Actuation of Hybrid Hydrogel Gripper via Ultrasound
Hyegyo Son, Eunjeong Byun, Yeon Ju Yoon, Juhong Nam, Seung Hyun Song, ChangKyu Yoon
IF 6.903 (2020)
ACS Macro Letters
Stimuli-responsive hydrogels that exhibit reversible volume changes in response to stimulus cues such as heat, pH, and light have been utilized in soft robotics, microfluidics, electronics, and biomedical surgical tools. While the development of the soft robotics has widely expanded, most external triggering systems still have limited utilities due to the low selectivity. We present a hybrid gripper capable of undergoing preprogrammed shape transformation utilizing ultrasound energy on–off processes as the external triggering system, which can be utilized in invisible and nonselective environments. Furthermore, we describe the magnetic locomotion of the soft gripper enabled by the introduction of iron oxide (Fe2O3) ferrogel. By integrating these dual ultrasonic and magnetic control systems, we demonstrate the soft gripper could actively and safely perform pick-and-place tasks on a biological salmon roe in the aqueous maze environment. We expect that this study can provide the groundwork for the further important advances to the creation of ultrasound-responsive shape programmable and multifunctional smart soft robots.
https://doi.org/10.1021/acsmacrolett.0c00702
Soft robotics
Microfluidics
Self-healing hydrogels
Robotics
Computer science
Robot
Artificial intelligence
Ultrasonic sensor
Materials science
Nanotechnology
Biomedical engineering
Engineering
Acoustics
4
Article
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인용수 31
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2020Advances in Stimuli-Responsive Soft Robots with Integrated Hybrid Materials
Hyegyo Son, ChangKyu Yoon
IF 1.994 (2020)
Actuators
Hybrid stimuli-responsive soft robots have been extensively developed by incorporating multi-functional materials, such as carbon-based nanoparticles, nanowires, low-dimensional materials, and liquid crystals. In addition to the general functions of conventional soft robots, hybrid stimuli-responsive soft robots have displayed significantly advanced multi-mechanical, electrical, or/and optical properties accompanied with smart shape transformation in response to external stimuli, such as heat, light, and even biomaterials. This review surveys the current enhanced scientific methods to synthesize the integration of multi-functional materials within stimuli-responsive soft robots. Furthermore, this review focuses on the applications of hybrid stimuli-responsive soft robots in the forms of actuators and sensors that display multi-responsive and highly sensitive properties. Finally, it highlights the current challenges of stimuli-responsive soft robots and suggests perspectives on future directions for achieving intelligent hybrid stimuli-responsive soft robots applicable in real environments.
https://doi.org/10.3390/act9040115
Robot
Soft robotics
Computer science
Actuator
Nanotechnology
Materials science
Artificial intelligence
Control engineering
Engineering