2019
DOI: 10.1007/s12274-019-2340-9
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A novel near-infrared light responsive 4D printed nanoarchitecture with dynamically and remotely controllable transformation

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Cited by 99 publications
(81 citation statements)
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“…These works are often accomplished prior to the 3D printing process. However, there is an alternative approach that allows for local anisotropic actuation as well-the selection and manipulation of multiple stimuli (Lee and Fang, 2012;Deng et al, 2018;Cui et al, 2019Cui et al, , 2020. Kotikian et al (2019) printed untethered soft robotic matter that allows repeated shaping and self-propulsion in response to external stimuli.…”
Section: The Soft Actuators Mimicked Via Stimulus-driven 4d Printingmentioning
confidence: 99%
“…These works are often accomplished prior to the 3D printing process. However, there is an alternative approach that allows for local anisotropic actuation as well-the selection and manipulation of multiple stimuli (Lee and Fang, 2012;Deng et al, 2018;Cui et al, 2019Cui et al, , 2020. Kotikian et al (2019) printed untethered soft robotic matter that allows repeated shaping and self-propulsion in response to external stimuli.…”
Section: The Soft Actuators Mimicked Via Stimulus-driven 4d Printingmentioning
confidence: 99%
“…Some special preparation methods, e.g., hydrogel, electrospinning, thermoset curing are suitable to develop SPN. In addition, it is worth to design SPN by readily available technology, for example, using coreshell templating [121][122][123], foaming [124], UV curing [125,126], 3D and 4D printing [127,128]. The addition of nanofiller could improve the performance of SMP and SHP nanocomposites attributed to their reinforcing-ability, nucleating-ability, and inherent functionalities (e.g., thermal conductivity, electrical conductivity).…”
Section: Conclusion and Future Perspectivementioning
confidence: 99%
“…For SMC materials activated by light is possible to stand out the work of Cui et al, were synthesized a 4D nano-printable composite [85]. The SMP matrix is based in an epoxy monomer crosslinked by poly(propylene glycol) bis(2aminopropyl) ether present a transition temperature around 45 °C, while graphene nanoplatelets used as nanofiller not varying the recovery properties, but improve the mechanical properties of SMP and the light-sensitive property.…”
Section: Lightmentioning
confidence: 99%