To provide adequate conditions for the regeneration of damaged bone, it is necessary to develop piezoelectric porous membranes with antioxidant and anti-inflammatory activities. In this study, composite nanofibers comprising poly(vinylidene fluoride) (PVDF) and a polyhedral oligomeric silsesquioxane⁻epigallocatechin gallate (POSS⁻EGCG) conjugate were fabricated by electrospinning methods. The resulting composite nanofibers showed three-dimensionally interconnected porous structures. Their average diameters, ranging from 936 ± 223 nm to 1094 ± 394 nm, were hardly affected by the addition of the POSS⁻EGCG conjugate. On the other hand, the piezoelectric β-phase increased significantly from 77.4% to 88.1% after ...
Electrospun techniques are promising and flexible technologies to fabricate ultrafine fiber/nanofibe...
For the improvement of tissue regeneration,functional polymer scaffolds that can mimic the extracell...
Electroactive materials can be taken to advantage for the development of sensors and actuators as we...
The field of bone tissue engineering deals with the issue of developing compatible and non-toxic sca...
Blood transfusion or blood products, such as plasma, have a long history in improving health, but to...
Piezoelectric properties of materials are becoming a more relevant area of research for biomaterials...
Electroactive materials can be taken to advantage for the development of sensors and actuators as we...
Damage to bone tissue is a common health issue that tends to increase in severity with age and other...
Polymer based composites are the backbone of piezoelectric flexible devices, but the use of toxic co...
Piezoelectric polymer, poly(vinylidene-trifluoroethylene) (P(VDF-TrFE)), exhibits excellent characte...
Polyvinylidene fluoride (PVDF) is hydrophobic, piezoelectric, and has good chemical stability and hi...
Functional nanofibrous materials composed of gelatin-apatite-poly(lactide- co-caprolactone) (PLCL) w...
Herein, electrospun zinc oxide nanoparticle/poly (vinylidene fluoride) (ZnONP/PVDF) composite fiber ...
Since the third scientific and technological revolution, electronic information technology has devel...
Here we report on the development of a hybrid nanofibrous scaffold made from polyvinylidene fluoride...
Electrospun techniques are promising and flexible technologies to fabricate ultrafine fiber/nanofibe...
For the improvement of tissue regeneration,functional polymer scaffolds that can mimic the extracell...
Electroactive materials can be taken to advantage for the development of sensors and actuators as we...
The field of bone tissue engineering deals with the issue of developing compatible and non-toxic sca...
Blood transfusion or blood products, such as plasma, have a long history in improving health, but to...
Piezoelectric properties of materials are becoming a more relevant area of research for biomaterials...
Electroactive materials can be taken to advantage for the development of sensors and actuators as we...
Damage to bone tissue is a common health issue that tends to increase in severity with age and other...
Polymer based composites are the backbone of piezoelectric flexible devices, but the use of toxic co...
Piezoelectric polymer, poly(vinylidene-trifluoroethylene) (P(VDF-TrFE)), exhibits excellent characte...
Polyvinylidene fluoride (PVDF) is hydrophobic, piezoelectric, and has good chemical stability and hi...
Functional nanofibrous materials composed of gelatin-apatite-poly(lactide- co-caprolactone) (PLCL) w...
Herein, electrospun zinc oxide nanoparticle/poly (vinylidene fluoride) (ZnONP/PVDF) composite fiber ...
Since the third scientific and technological revolution, electronic information technology has devel...
Here we report on the development of a hybrid nanofibrous scaffold made from polyvinylidene fluoride...
Electrospun techniques are promising and flexible technologies to fabricate ultrafine fiber/nanofibe...
For the improvement of tissue regeneration,functional polymer scaffolds that can mimic the extracell...
Electroactive materials can be taken to advantage for the development of sensors and actuators as we...