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June 1, 1991Makromolekulare Chemie Macromolecular Symposia1,426 citations

Buildup of ultrathin multilayer films by a self‐assembly process, 1 consecutive adsorption of anionic and cationic bipolar amphiphiles on charged surfaces

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GDGero DecherJHJong‐Dal Hong

Key Points

  • This research aims to explore the buildup of ultrathin multilayer films through the self-assembly of bipolar amphiphiles on charged surfaces.
  • Synthesis of anionic and cationic bipolar amphiphiles with rigid biphenyl cores.
  • Adsorption of consecutive monolayers by immersing a positively charged substrate in solutions of negatively and positively charged amphiphiles.
  • Cyclic immersion and rinsing to achieve alternating multilayer assemblies.
  • Multilayer films with at least 35 alternating layers were obtained, resulting in a film thickness of 170 nm.
  • The surface charge was successfully reversed during the assembly process by alternating the amphiphiles.

Abstract

Abstract An anionic and a cationic bipolar amphiphile containing rigid biphenyl cores were synthesized. The compounds were dissolved in a mixture of dimethylsulfoxide (DMSO) and water and pure water, respectively. When a solid substrate with a positively charged planar surface is immersed in the solution containing the negatively charged bipolar amphiphile, a monolayer of the amphiphile is adsorbed and due to its bipolar structure the surface charge is reversed. After rinsing in pure water the substrate is immersed in the solution containing the positively charged bipolar amphiphile. Again a monolayer is adsorbed but now the original surface charge is restored. By repeating both steps in a cyclic fashion alternating multilayer assemblies of both compounds are obtained. It is demonstrated that multilayer films, composed of at least 35 consecutively alternating layers, which corresponds to a total film thickness of 170 nm can be assembled.

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Cite This Study

Decher et al. (1991) studied this question.

synapsesocial.com/papers/6a1c180e4ebd09f3dfa96e51https://doi.org/10.1002/masy.19910460145
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