Electric potential plays an indispensable role in tissue engineering and wound healing. Piezoelectric nanogenerators based on direct piezoelectric effects can be self-powered energy sources for electrical stimulation and have attracted extensive attention. However, the accuracy of piezoelectric stimuli on piezoelectric polymers membranes in vitro during the dynamic condition is rarely studied. Here, a self-powered tunable electrical stimulation system for assisting the proliferation of preosteoblasts was achieved by well-aligned P(VDF-TrFE) piezoelectric nanofiber membrane (NFM) both as a nanogenerator (NG) and as a scaffold. The effects of electrospinning and different post-treatments (annealing and poling) on the surface wettability, piez...
Energy harvesting systems have benefited from the use of one-dimensional nanostructures such as nano...
Several body tissues, including bone and muscle, are subjected to electromechanical solicitations du...
Thesis (Ph.D.)--University of Washington, 2013Well-ordered one-dimensional nanostructures (nanofiber...
Piezoelectric polymer, poly(vinylidene-trifluoroethylene) (P(VDF-TrFE)), exhibits excellent characte...
Aligned P(VDF-TrFE) nanofibers are successfully fabricated by advanced electrospinning. The aligned ...
Abstract This paper introduces a new approach of testing piezoelectric nanofibers as antibacterial m...
Since the third scientific and technological revolution, electronic information technology has devel...
Piezoelectric properties of materials are becoming a more relevant area of research for biomaterials...
The field of bone tissue engineering deals with the issue of developing compatible and non-toxic sca...
Tissue engineering is concerned on the growth of tissue making organs for implantation back to the d...
Poly (vinylidene fluoride) (PVDF) nanofibers have been applied in producing piezoelectric membranes ...
The field of nanotechnology has been gaining great success due to its potential in developing new ge...
Polymer based composites are the backbone of piezoelectric flexible devices, but the use of toxic co...
Miniaturized, wearable and self-powered sensors are crucial for applications in artificial intellige...
Wound healing is a highly orchestrated biological process characterized by sequential phases involvi...
Energy harvesting systems have benefited from the use of one-dimensional nanostructures such as nano...
Several body tissues, including bone and muscle, are subjected to electromechanical solicitations du...
Thesis (Ph.D.)--University of Washington, 2013Well-ordered one-dimensional nanostructures (nanofiber...
Piezoelectric polymer, poly(vinylidene-trifluoroethylene) (P(VDF-TrFE)), exhibits excellent characte...
Aligned P(VDF-TrFE) nanofibers are successfully fabricated by advanced electrospinning. The aligned ...
Abstract This paper introduces a new approach of testing piezoelectric nanofibers as antibacterial m...
Since the third scientific and technological revolution, electronic information technology has devel...
Piezoelectric properties of materials are becoming a more relevant area of research for biomaterials...
The field of bone tissue engineering deals with the issue of developing compatible and non-toxic sca...
Tissue engineering is concerned on the growth of tissue making organs for implantation back to the d...
Poly (vinylidene fluoride) (PVDF) nanofibers have been applied in producing piezoelectric membranes ...
The field of nanotechnology has been gaining great success due to its potential in developing new ge...
Polymer based composites are the backbone of piezoelectric flexible devices, but the use of toxic co...
Miniaturized, wearable and self-powered sensors are crucial for applications in artificial intellige...
Wound healing is a highly orchestrated biological process characterized by sequential phases involvi...
Energy harvesting systems have benefited from the use of one-dimensional nanostructures such as nano...
Several body tissues, including bone and muscle, are subjected to electromechanical solicitations du...
Thesis (Ph.D.)--University of Washington, 2013Well-ordered one-dimensional nanostructures (nanofiber...