Conducting polymers (CPs) form a class of organic materials whose electronic properties bridge the gap between conventional insulating polymers and inorganic conductors such as metals or metal oxides. Their discovery challenged the long-held assumption that conjugated organicmaterials were inherently insulating, opening a new field that connected polymer chemistry, condensed matter physics, electrochemistry, and materials science.At the molecular level, conducting polymers possess a π-conjugated backbone—typically composed of alternating single and double bonds—which supports the delocalization of electrons. This conjugation enables charge transport upon either chemical doping (oxidation or reduction) or electrochemical doping. The resulting mobile charge carriers—polarons,bipolarons, solitons, or delocalized states—give conducting polymers unique electrical, electrochemical, and optical properties.
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Taschenbuch. Etat : Neu. This item is printed on demand - it takes 3-4 days longer - Neuware -Conducting polymers (CPs) form a class of organic materials whose electronic properties bridge the gap between conventional insulating polymers and inorganic conductors such as metals or metal oxides. Their discovery challenged the long-held assumption that conjugated organicmaterials were inherently insulating, opening a new field that connected polymer chemistry, condensed matter physics, electrochemistry, and materials science.At the molecular level, conducting polymers possess a pi-conjugated backbone-typically composed of alternating single and double bonds-which supports the delocalization of electrons. This conjugation enables charge transport upon either chemical doping (oxidation or reduction) or electrochemical doping. The resulting mobile charge carriers-polarons,bipolarons, solitons, or delocalized states-give conducting polymers unique electrical, electrochemical, and optical properties. 52 pp. Englisch. N° de réf. du vendeur 9786209307812
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Paperback. Etat : new. Paperback. Conducting polymers (CPs) form a class of organic materials whose electronic properties bridge the gap between conventional insulating polymers and inorganic conductors such as metals or metal oxides. Their discovery challenged the long-held assumption that conjugated organicmaterials were inherently insulating, opening a new field that connected polymer chemistry, condensed matter physics, electrochemistry, and materials science.At the molecular level, conducting polymers possess a p-conjugated backbone-typically composed of alternating single and double bonds-which supports the delocalization of electrons. This conjugation enables charge transport upon either chemical doping (oxidation or reduction) or electrochemical doping. The resulting mobile charge carriers-polarons, bipolarons, solitons, or delocalized states-give conducting polymers unique electrical, electrochemical, and optical properties. This item is printed on demand. Shipping may be from our UK warehouse or from our Australian or US warehouses, depending on stock availability. N° de réf. du vendeur 9786209307812
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