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- W4313256568 endingPage "100137" @default.
- W4313256568 startingPage "100137" @default.
- W4313256568 abstract "Hybrid nanoarchitectures where inorganic nanoparticles are added into a polymer matrix can present superior characteristics and unique synergetic effects. However, the homogeneously structured and monodispersed hybrid film has been a critical challenge because of the intrinsic incompatibility of hydrophobic nanoparticles and hydrophobic polymers. This review focuses on hierarchically hybrid nanoarchitectures of polymers and nanoparticles by electrochemical approaches. Of many methods, the use of electrochemically bottom-up in situ synthesis can prepare the controlled layered and hybrid formations of polymers and nanoparticles. The advantages are film-forming ability from very dilute solutions of nanoparticles and polymers, and covalently cross-linked structural stability. The electrochemical approach has provided highly predicted functions and performances for applications mostly studied including sensor, catalysis, and optoelectric relatives. With these in hand, electrochemically engineered hybrid nanoarchitectures of polymers and nanoparticles hold promise for the fabrication of hierarchically ordered materials on hardly or flexibly conductive substrates with rational scales and dimensions." @default.
- W4313256568 created "2023-01-06" @default.
- W4313256568 creator A5023135321 @default.
- W4313256568 creator A5033822228 @default.
- W4313256568 creator A5069530992 @default.
- W4313256568 date "2023-03-01" @default.
- W4313256568 modified "2023-10-18" @default.
- W4313256568 title "Electrochemically engineered hybrid nanoarchitectures of polymers and nanoparticles" @default.
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