Piezoelectric polymer composite foams are synthesized using different sugar-templating strategies. By incorporating sugar grains directly into polydimethylsiloxane mixtures containing barium titanate nanoparticles and carbon nanotubes, followed by removal of the sugar after polymer curing, highly compliant materials with excellent piezoelectric properties can be fabricated. Porosities and elasticity are tuned by simply adjusting the sugar/polymer mass ratio which gave an upper bound on the porosity of 73% and a lower bound on the elastic coefficient of 32 kPa. The electrical performance of the foams showed a direct relationship between porosity and the piezoelectric outputs, giving piezoelectric coefficient values of ∼112 pC/N and a power o...
Piezoelectricity can be defined as the ability of certain materials to provide mechanical–electrical...
Piezoelectric materials are one of the most important components in various applications including e...
Piezoelectric materials have the potential to completely replace batteries for low-power electronics...
Herein we demonstrate that efficient piezoelectric nanoparticle-polymer composite materials can be s...
In recent years the number of applications relying on piezoelectric sensors has increased rapidly. N...
Piezoelectric energy harvesters (PEHs) have the potential to power low-power electronic devices and ...
Different materials provide a mechanical-electrical energy conversion and are thus interesting candi...
Despite considerable research interest in developing piezoelectric materials, little work has focuse...
Sugar casting is a simple and cost-effective direct method of generating polymer foams. By incorpora...
Piezoelectric ceramics, which have the ability to interconvert between mechanical and electrical ene...
Piezoelectric ceramics, which have the ability to interconvert between mechanical and electrical ene...
The need for flexible, highly sensitive tactile sensors that can fit onto curved surfaces is driving...
Hypothesis: Nanocarbon/polymeric 3D porous composites have been widely developed as piezoresistive s...
The piezoelectric effect, which causes a material to generate a voltage when it deforms, is very sui...
The sensitivity enhancement of piezocomposites can realize new applications. Introducing a cellular ...
Piezoelectricity can be defined as the ability of certain materials to provide mechanical–electrical...
Piezoelectric materials are one of the most important components in various applications including e...
Piezoelectric materials have the potential to completely replace batteries for low-power electronics...
Herein we demonstrate that efficient piezoelectric nanoparticle-polymer composite materials can be s...
In recent years the number of applications relying on piezoelectric sensors has increased rapidly. N...
Piezoelectric energy harvesters (PEHs) have the potential to power low-power electronic devices and ...
Different materials provide a mechanical-electrical energy conversion and are thus interesting candi...
Despite considerable research interest in developing piezoelectric materials, little work has focuse...
Sugar casting is a simple and cost-effective direct method of generating polymer foams. By incorpora...
Piezoelectric ceramics, which have the ability to interconvert between mechanical and electrical ene...
Piezoelectric ceramics, which have the ability to interconvert between mechanical and electrical ene...
The need for flexible, highly sensitive tactile sensors that can fit onto curved surfaces is driving...
Hypothesis: Nanocarbon/polymeric 3D porous composites have been widely developed as piezoresistive s...
The piezoelectric effect, which causes a material to generate a voltage when it deforms, is very sui...
The sensitivity enhancement of piezocomposites can realize new applications. Introducing a cellular ...
Piezoelectricity can be defined as the ability of certain materials to provide mechanical–electrical...
Piezoelectric materials are one of the most important components in various applications including e...
Piezoelectric materials have the potential to completely replace batteries for low-power electronics...