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Soft shape-programmable surfaces by fast electromagnetic actuation of liquid metal networks

4.6 (122) · $ 30.00 · In stock

Soft shape-programmable surfaces by fast electromagnetic actuation of  liquid metal networks
Compliant Electromagnetic Actuator Architecture for Soft Robotics

Compliant Electromagnetic Actuator Architecture for Soft Robotics

The reconfigurable DEA device showing folding and unfolding

The reconfigurable DEA device showing folding and unfolding

Self-folding soft-robotic chains with reconfigurable shapes and

Self-folding soft-robotic chains with reconfigurable shapes and

Self-Healing Liquid Metal Magnetic Hydrogels for Smart Feedback Sensors and  High-Performance Electromagnetic Shielding

Self-Healing Liquid Metal Magnetic Hydrogels for Smart Feedback Sensors and High-Performance Electromagnetic Shielding

PDF] A multifunctional shape-morphing elastomer with liquid metal

PDF] A multifunctional shape-morphing elastomer with liquid metal

A multifunctional soft robotic shape display with high-speed

A multifunctional soft robotic shape display with high-speed

Soft shape-programmable surfaces by fast electromagnetic actuation

Soft shape-programmable surfaces by fast electromagnetic actuation

Biosensors, Free Full-Text

Biosensors, Free Full-Text

Electrolytic reduction of liquid metal oxides and its application

Electrolytic reduction of liquid metal oxides and its application

PDF) Soft shape-programmable surfaces by fast electromagnetic actuation of liquid  metal networks

PDF) Soft shape-programmable surfaces by fast electromagnetic actuation of liquid metal networks

Nanomaterials, Free Full-Text

Nanomaterials, Free Full-Text

Liquid metal droplets enabled soft robots - ScienceDirect

Liquid metal droplets enabled soft robots - ScienceDirect

Asymmetric elastoplasticity of stacked graphene assembly

Asymmetric elastoplasticity of stacked graphene assembly

Soft shape-programmable surfaces by fast electromagnetic actuation of  liquid metal networks

Soft shape-programmable surfaces by fast electromagnetic actuation of liquid metal networks