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3D Printed Polymer Piezoelectric Materials: Transforming Healthcare through Biomedical Applications
by
Ali, Fawad
, Koc, Muammer
in
3-D printers
/ 3D printing
/ Actuators
/ Analysis
/ Artificial muscles
/ Biocompatibility
/ Biomedical engineering
/ Biomedical materials
/ Charged particles
/ Controllability
/ Customization
/ Deformation
/ Drug delivery systems
/ Electric fields
/ Energy
/ Flexibility
/ Fluorides
/ Functional materials
/ Health care
/ Mechanical properties
/ Medical electronics
/ Methods
/ Piezoelectric materials
/ Piezoelectricity
/ Polymers
/ Properties
/ Reproducibility
/ Sensors
/ Smart materials
/ Three dimensional printing
/ Tissue engineering
/ Ultrasonic imaging
2023
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3D Printed Polymer Piezoelectric Materials: Transforming Healthcare through Biomedical Applications
by
Ali, Fawad
, Koc, Muammer
in
3-D printers
/ 3D printing
/ Actuators
/ Analysis
/ Artificial muscles
/ Biocompatibility
/ Biomedical engineering
/ Biomedical materials
/ Charged particles
/ Controllability
/ Customization
/ Deformation
/ Drug delivery systems
/ Electric fields
/ Energy
/ Flexibility
/ Fluorides
/ Functional materials
/ Health care
/ Mechanical properties
/ Medical electronics
/ Methods
/ Piezoelectric materials
/ Piezoelectricity
/ Polymers
/ Properties
/ Reproducibility
/ Sensors
/ Smart materials
/ Three dimensional printing
/ Tissue engineering
/ Ultrasonic imaging
2023
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Do you wish to request the book?
3D Printed Polymer Piezoelectric Materials: Transforming Healthcare through Biomedical Applications
by
Ali, Fawad
, Koc, Muammer
in
3-D printers
/ 3D printing
/ Actuators
/ Analysis
/ Artificial muscles
/ Biocompatibility
/ Biomedical engineering
/ Biomedical materials
/ Charged particles
/ Controllability
/ Customization
/ Deformation
/ Drug delivery systems
/ Electric fields
/ Energy
/ Flexibility
/ Fluorides
/ Functional materials
/ Health care
/ Mechanical properties
/ Medical electronics
/ Methods
/ Piezoelectric materials
/ Piezoelectricity
/ Polymers
/ Properties
/ Reproducibility
/ Sensors
/ Smart materials
/ Three dimensional printing
/ Tissue engineering
/ Ultrasonic imaging
2023
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3D Printed Polymer Piezoelectric Materials: Transforming Healthcare through Biomedical Applications
Journal Article
3D Printed Polymer Piezoelectric Materials: Transforming Healthcare through Biomedical Applications
2023
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Overview
Three-dimensional (3D) printing is a promising manufacturing platform in biomedical engineering. It offers significant advantages in fabricating complex and customized biomedical products with accuracy, efficiency, cost-effectiveness, and reproducibility. The rapidly growing field of three-dimensional printing (3DP), which emphasizes customization as its key advantage, is actively searching for functional materials. Among these materials, piezoelectric materials are highly desired due to their linear electromechanical and thermoelectric properties. Polymer piezoelectrics and their composites are in high demand as biomaterials due to their controllable and reproducible piezoelectric properties. Three-dimensional printable piezoelectric materials have opened new possibilities for integration into biomedical fields such as sensors for healthcare monitoring, controlled drug delivery systems, tissue engineering, microfluidic, and artificial muscle actuators. Overall, this review paper provides insights into the fundamentals of polymer piezoelectric materials, the application of polymer piezoelectric materials in biomedical fields, and highlights the challenges and opportunities in realizing their full potential for functional applications. By addressing these challenges, integrating 3DP and piezoelectric materials can lead to the development of advanced sensors and devices with enhanced performance and customization capabilities for biomedical applications.
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