
polyelectrolytes
Sign in to saveAlso known as polysalts, polyelectrolyte
thumb|200px|Chemical structures of two synthetic polyelectrolytes, as examples. To the left is sodium polystyrene sulfonate|poly(sodium styrene sulfonate) (PSS), and to the right is [[polyacrylic acid (PAA). Both are negatively charged polyelectrolytes when dissociated. PSS is a 'strong' polyelectrolyte (fully charged in solution), whereas PAA is 'weak' (partially charged).]]
Research
16,778 papers- Customizing polyelectrolytes through hydrophobic grafting.Advances in colloid and interface science · 2022
- Weak Polyelectrolytes as Nanoarchitectonic Design Tools for Functional Materials: A Review of Recent Achievements.Molecules (Basel, Switzerland) · 2022
- Interaction of Proteins with Polyelectrolytes: Comparison of Theory to Experiment.Langmuir : the ACS journal of surfaces and colloids · 2019
- Complexation between antimicrobial peptides and polyelectrolytes.Advances in colloid and interface science · 2019
- Comb Polyelectrolytes Stabilize Complex Coacervate Microdroplet Dispersions.ACS macro letters · 2022
via PubMed
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- Polyelectrolytes
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Article
10 sectionsContents
- Charge
- Conformation
- Polyampholytes
- Applications
- Multilayers
- Bridging
- Polyacid
- See also
- References
- External links
thumb|200px|Chemical structures of two synthetic polyelectrolytes, as examples. To the left is sodium polystyrene sulfonate|poly(sodium styrene sulfonate) (PSS), and to the right is [[polyacrylic acid (PAA). Both are negatively charged polyelectrolytes when dissociated. PSS is a 'strong' polyelectrolyte (fully charged in solution), whereas PAA is 'weak' (partially charged).]]
Polyelectrolytes are polymers whose repeating units bear an electrolyte group. Polycations and polyanions are polyelectrolytes. These groups dissociate in aqueous solutions (water), making the polymers charged. Polyelectrolyte properties are thus similar to both electrolytes (salts) and polymers (high molecular weight compounds) and are sometimes called polysalts. Like salts, their solutions are electrically conductive. Like polymers, their solutions are often viscous. Charged molecular chains, commonly present in soft matter systems, play a fundamental role in determining structure, stability and the interactions of various molecular assemblies. Theoretical approaches to describe their statistical properties differ profoundly from those of their electrically neutral counterparts, while technological and industrial fields exploit their unique properties. Many biological molecules are polyelectrolytes. For instance, polypeptides, glycosaminoglycans, and DNA are polyelectrolytes. Both natural and synthetic polyelectrolytes are used in a variety of industries.