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Polyaniline: a new concept in conducting polymers

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TLDR
In this paper, the emeraldine oxidation state of polyaniline was converted from an insulator to a metal by treatment with 1M aqueous HCl to form the corresponding salt, emeraldines hydrochloride.
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This article is published in Synthetic Metals.The article was published on 1987-02-01. It has received 1286 citations till now. The article focuses on the topics: Polyaniline & Conductive polymer.

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"Synthetic Metals": A Novel Role for Organic Polymers (Nobel Lecture).

TL;DR: Herein is described a novel, simple, and cheap method to prepare patterns of conducting polymers by a process which the authors term, "Line Patterning".
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Polyaniline: a polymer with many interesting intrinsic redox states

TL;DR: The ability of aniline polymers to exist in a large number of intrinsic redox states makes them a unique and interesting class of polymeric materials as mentioned in this paper, and a number of fine reviews on the synthesis, physicochemical and electrochemical properties of the polymer have also appeared during this period.
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Conductive polymers: towards a smart biomaterial for tissue engineering.

TL;DR: Focusing mainly on polypyrrole, polyaniline and poly(3,4-ethylenedioxythiophene), this work reviews conductive polymers from the perspective of tissue engineering.
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Polyaniline: A historical survey

TL;DR: A survey of the literature available on conducting organic polyaniline can be found in this paper, where the authors provide a survey of some of the most recent work on polyanILine.
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Electrochemistry of Conducting Polymers—Persistent Models and New Concepts†

TL;DR: Electropolymerization in Novel Electrolytic Media 4745: Influence of the Polymerization Technique, Influence of Experimental Conditions, and Specific Phenomena of n-Doping.
References
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Journal ArticleDOI

‘Polyaniline’: Protonic acid doping of the emeraldine form to the metallic regime

TL;DR: The emeraldine base form of polyaniline, which consists of equal numbers of reduced and oxidized repeat units, is doped to the metallic conducting regime by aqueous 1 M HCl as mentioned in this paper.
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Electrochemical chains using protolytic organic semiconductors

TL;DR: The properties of organic semiconductors, especially polyanilines, are reviewed in this article in the light of recent work, and the properties of the polyaniliines are discussed in detail.
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Transport and Magnetic Resonance Studies of Polyaniline

TL;DR: In this article, the metal-insulator transition upon pH variation has been investigated in polyaniline samples equilibrated at different pH levels, and it has been shown that the metal insulator becomes metal-conductivity, thermoelectric power, spin concentration and spin dynamics changes with pH variation.
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Vibrational spectra of polyaniline and its 15N- and 2H-substituted derivatives in as-polymerized, alkali-treated and reduced states

TL;DR: In this article, the Raman spectra of polyaniline and its 15 N- and 2 H-substituted derivatives were studied in as-polymerized (conductive), alkali-treated (insulating) and electrochemically reduced (inulating) states.
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