Dynamic Network
Here, we present a biomass-derived conductive elastomer featuring a rationally engineered dynamic crosslinked network integrated with a tunable microporous architecture.
Here, we present a biomass-derived conductive elastomer featuring a rationally engineered dynamic crosslinked network integrated with a tunable microporous architecture.
Jute fibers (JFs) coated with multiwall carbon nanotubes (MWCNTs) have been introduced in a natural rubber (NR) matrix creating a three-dimensional (3D) electrically conductive percolated network.
Perfection of local microcurrent network with a–c) orientation control strategy and d–f) content control strategy.
To ensure optimal electrical performance, an analytical model for the resistance-strain relationship of conductive fabrics with multilevel structure is established.
In this work, for the first time to the authors'' knowledge, a fully integrated wearable closed‐loop system (IWCS) based on mini‐invasive microneedle platform is developed for in situ
As an illustration, conductive polymers like polypyrrole (PPy) forge a microcurrent environment among nerve conduits. This boosts nerve cell progress and axonal extension.
In this work, we adopted a coarse-grained molecular dynamics simulation to investigate the effect of the nanorod (NR) functionalization on the conductive probability of PNCs under the quiescent state or
This paper presents a modeling approach for establishing the multi-scale 3-D conductive network to study the current conduction behavior of the braided composites.
Here, we report a simple and efficient method to synthesize a nanostructured conductive hydrogel to meet such criteria.
In this study, carbon nanotubes (CNTs) and graphene oxide (GO) were incorporated into double-network hydrogels synthesized from gelatin and polyacrylamide (PAAm) to render the
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