The programmable sequential actuation of two-dimensional hydrogel membranes into three-dimensional folded architectures has been achieved by combining ionoprinting and redox chemistry; this methodology permits the programmed evolution of complex architectures triggered through localized out-of-plane deformations. In our study we describe a soft actuator which utilizes ionoprinting of iron and vanadium, with the selective reduction of iron through a mild reducing agent, to achieve chemically controlled sequential folding. Through the optimization of solvent polarity and ionoprinting variables (voltage, duration and anode composition), we have shown how the actuation pathways, rate-of-movement and magnitude of angular rotation can be controll...
This article describes the design and synthesis of a new series of hydrogel membranes composed of t...
Reversible light-responsive hydrogel valves with response characteristics compatible for microfluidi...
Catechol-containing hydrogels were ionoprinted with various metal ions (copper, zinc, aluminum, and ...
The programmable sequential actuation of two-dimensional hydrogel membranes into three-dimensional f...
Ionoprinting has proven itself as a technique capable of enabling repeated post-synthesis programmin...
In this thesis, the topics around stimuli-responsive hydrogel actuators were discussed. In each proj...
Hydrogel actuators were prepared by combining ionoprinting technique with reversible metal ion coord...
A novel hydrogel actuator that combines ionoprinting techniques with reversible catechol-metal ion c...
We report multi-responsive and double-folding bilayer hydrogel sheet actuators, whose directional be...
Hydrogel actuators were prepared by combining ionoprinting technique with reversible metal ion coord...
Biological structures in nature are made out of components which respond to external cues present in...
The rapid development of microtechnology in recent times has increased the necessity for the develop...
Rapid and reversible actuation and shape memory effects are critical for biomimetic soft actuators b...
This review discusses the currently available 3D printing approaches, design concepts, and material...
Freely swelling, three-dimensionally patterned responsive hydrogels fabricated by multiphoton lithog...
This article describes the design and synthesis of a new series of hydrogel membranes composed of t...
Reversible light-responsive hydrogel valves with response characteristics compatible for microfluidi...
Catechol-containing hydrogels were ionoprinted with various metal ions (copper, zinc, aluminum, and ...
The programmable sequential actuation of two-dimensional hydrogel membranes into three-dimensional f...
Ionoprinting has proven itself as a technique capable of enabling repeated post-synthesis programmin...
In this thesis, the topics around stimuli-responsive hydrogel actuators were discussed. In each proj...
Hydrogel actuators were prepared by combining ionoprinting technique with reversible metal ion coord...
A novel hydrogel actuator that combines ionoprinting techniques with reversible catechol-metal ion c...
We report multi-responsive and double-folding bilayer hydrogel sheet actuators, whose directional be...
Hydrogel actuators were prepared by combining ionoprinting technique with reversible metal ion coord...
Biological structures in nature are made out of components which respond to external cues present in...
The rapid development of microtechnology in recent times has increased the necessity for the develop...
Rapid and reversible actuation and shape memory effects are critical for biomimetic soft actuators b...
This review discusses the currently available 3D printing approaches, design concepts, and material...
Freely swelling, three-dimensionally patterned responsive hydrogels fabricated by multiphoton lithog...
This article describes the design and synthesis of a new series of hydrogel membranes composed of t...
Reversible light-responsive hydrogel valves with response characteristics compatible for microfluidi...
Catechol-containing hydrogels were ionoprinted with various metal ions (copper, zinc, aluminum, and ...