The formation of hybrid bioactive and inherently conductive constructs of composites formed from polyaniline-polyacrylamidomethylpropane sulfonic acid (PAn-PAAMPSA) nanomaterials (0.00–10.0 wt%) within poly(2-hydroxy ethyl methacrylate-co-N-{Tris(hydroxymethyl)methyl} acrylamide)-co-polyethyleneglycol methacrylate) p(HEMA-co-HMMA-co-PEGMA) hydrogels was made possible using microlithographic fabrication and 3-D printing. Hybrid constructs formed by combining a non-conductive base (0.00 wt% PAn-PAAMPSA) and electroconductive (ECH) (varying wt% PAn-PAAMPSA) hydrogels using these two production techniques were directly compared. Hydrogels were electrically characterized using two-point probe resistivity and electrochemical impedance spect...
Injectable hydrogels have served as biomimic scaffolds that provide a three-dimensional (3D) structu...
Conducting polymers (CPs) have exciting potential as scaffolds for tissue engineering, typically app...
Different levels of interpenetration of poly(hydroxymethyl-3,-4-ethylenedioxythiophene) (PHMeDOT) in...
The formation of hybrid bioactive and inherently conductive constructs of composites formed from pol...
Electrically conductive hydrogels have recently generated much attention, as they have significant p...
Electroconductive hydrogels (ECHs) are highly hydrated 3D networks generated through the incorporati...
Bioelectronic devices enable efficient and effective communication between medical devices and human...
Intrinsically conducting polymers (ICPs) are widely used to fabricate biomaterials; their applicatio...
The progress made in tissue engineering to treat damage caused by disease and traumatic injury has b...
Abstract Electrically conductive materials that mimic physical and biological properties of tissues...
Recently, the 3D printing of conductive hydrogels has undergone remarkable advances in the fabricati...
Electrically conductive materials that mimic physical and biological properties of tissues are urgen...
The need for biocompatible, low impedance abio-to-bio interfaces suitable for implantable bioactive ...
The emergence of flexible and stretchable electronic components expands the range of applications of...
In this paper, we present the biomanufacturing of patterned electrically conductive and cell- embedd...
Injectable hydrogels have served as biomimic scaffolds that provide a three-dimensional (3D) structu...
Conducting polymers (CPs) have exciting potential as scaffolds for tissue engineering, typically app...
Different levels of interpenetration of poly(hydroxymethyl-3,-4-ethylenedioxythiophene) (PHMeDOT) in...
The formation of hybrid bioactive and inherently conductive constructs of composites formed from pol...
Electrically conductive hydrogels have recently generated much attention, as they have significant p...
Electroconductive hydrogels (ECHs) are highly hydrated 3D networks generated through the incorporati...
Bioelectronic devices enable efficient and effective communication between medical devices and human...
Intrinsically conducting polymers (ICPs) are widely used to fabricate biomaterials; their applicatio...
The progress made in tissue engineering to treat damage caused by disease and traumatic injury has b...
Abstract Electrically conductive materials that mimic physical and biological properties of tissues...
Recently, the 3D printing of conductive hydrogels has undergone remarkable advances in the fabricati...
Electrically conductive materials that mimic physical and biological properties of tissues are urgen...
The need for biocompatible, low impedance abio-to-bio interfaces suitable for implantable bioactive ...
The emergence of flexible and stretchable electronic components expands the range of applications of...
In this paper, we present the biomanufacturing of patterned electrically conductive and cell- embedd...
Injectable hydrogels have served as biomimic scaffolds that provide a three-dimensional (3D) structu...
Conducting polymers (CPs) have exciting potential as scaffolds for tissue engineering, typically app...
Different levels of interpenetration of poly(hydroxymethyl-3,-4-ethylenedioxythiophene) (PHMeDOT) in...