Conductive polymers and nanocomposites represent a dynamic intersection of polymer chemistry, nanotechnology and materials science, leading to innovative applications in electronics, sensing devices, ...
Polypyrrole, poly(phenylacetylene), poly(p-phenylene sulfide), poly(p-phenylene), polythiophene, polyfuran, polyaniline, polycarboxylate, and its derivatives are some ...
The graphene-enhanced conductive polymers market is driven by the demand for miniaturization and higher conductivity.
A single strand of newly developed fiber has the flexibility of cotton and the electric conductivity of the polymer, polyaniline. The new material has shown good potential for wearable e-textiles. The ...
An international research team has synthesized a multilayered two-dimensional polyaniline (2DPANI) crystal, achieving unique metallic out-of-plane charge transport and high conductivity. This study ...
Human–machine interfaces: Soft, stretchable conducting polymers enable bioelectronic applications including electrophysiological recording and stimulation. (Courtesy: Yuanwen Jiang, Yi-Xuan Wang, Jian ...
Anyone who has ever had to get a magnetic resonance imaging (MRI) scan knows that magnetic and highly conductive materials ...
The new Premix facility in North Carolina with carbon black silos visible on the outside. Premix's new facility in North Carolina features end-to-end automation to provide real-time monitoring of ...
With electronic devices gaining power and losing bulk, design engineers have really started to feel the heat. Thermal management once meant a few well-placed fans, vents, and aluminum heat sinks. But ...
Electrically conductive "smart fabrics" have many potential applications, but their specialized fibers typically aren't as soft and flexible as those made of regular materials. An experimental new two ...
Semiconducting polymer nanomaterials are advanced π-conjugated polymers with alternating double and single bonds, which allow for π-electron delocalization and intermolecular π−π interactions. Unlike ...