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Review of progress in shape-memory polymers

Journal of Materials Chemistry · 2007 · Vol. 17(16) · pp. 1543–1543
C. LiuH. X. QinPatrick T. Mather

Abstract

Shape-memory polymers (SMPs) have attracted significant attention from both industrial and academic researchers due to their useful and fascinating functionality. This review thoroughly examines progress in shape-memory polymers, including the very recent past, achieved by numerous groups around the world and our own research group. Considering all of the shape-memory polymers reviewed, we identify a classification scheme wherein nearly all SMPs may be associated with one of four classes in accordance with their shape fixing and recovering mechanisms and as dictated by macromolecular details. We discuss how the described shape-memory polymers show great potential for diverse applications, including in the medical arena, sensors, and actuators.

Polymer composites and self-healingConducting polymers and applicationsAdvanced Sensor and Energy Harvesting MaterialsShape-memory polymerPolymerShape-memory alloyNanotechnologyComputer scienceActuatorMaterials scienceArtificial intelligenceComposite material

Funding

  • Boston Scientific Corporation
  • U.S. Air Force
Citations
1,902
FWCI
52.29
field-weighted impact
References
121
Percentile
100%
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Citations per year
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References
High-field deformation of elastomeric dielectrics for actuators
Materials Science and Engineering C · 2000 · 681 citations
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