2019
DOI: 10.1007/s10853-019-04141-z
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Advances in polyaniline-based nanocomposites

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Cited by 107 publications
(42 citation statements)
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“…In the midst of CPs, polyaniline (PANI) has foremost place because of easy synthesis, unique acid base chemistry, good environmental stability, tunable electrical conductivity and biocompatibility [167,168]. Conducting polymer-metal nanocomposites, a new class of materials, offers device design possibility with new functionality, in which the optimized properties of both organic and inorganic have been exploited [169][170][171][172][173][174][175]. Many appealing studies have been reported in literatures based on nanocomposites of PANI with different metals such as PANI-Ag [176,177], PANI-Au [178][179][180], PANI-Pt [181][182][183] and PANI-Cu [184,185].…”
Section: Polyaniline-silver Nanocompositementioning
confidence: 99%
“…In the midst of CPs, polyaniline (PANI) has foremost place because of easy synthesis, unique acid base chemistry, good environmental stability, tunable electrical conductivity and biocompatibility [167,168]. Conducting polymer-metal nanocomposites, a new class of materials, offers device design possibility with new functionality, in which the optimized properties of both organic and inorganic have been exploited [169][170][171][172][173][174][175]. Many appealing studies have been reported in literatures based on nanocomposites of PANI with different metals such as PANI-Ag [176,177], PANI-Au [178][179][180], PANI-Pt [181][182][183] and PANI-Cu [184,185].…”
Section: Polyaniline-silver Nanocompositementioning
confidence: 99%
“…Actually, several inorganic nanomaterials have been used to dope into the polymer networks, such as PANi/Ni [18], PANi/Au [19], PANi/WO3 [20], PANi/Mn2O3 [21], PANi/MnO2 [22] and PANi/MWCNTs [8] nanocomposites. In general, these nanocomposites can be synthesized by different techniques including chemical, electrochemical, photochemical and mechano-chemical methods and these developed materials have been applied for many applications such as energy storage, electrochemical biosensors, electrochemical sensors, FET-based biosensors, and coating and metal protecting [1]. To apply of the inorganic nanomaterial/conducting polymer nanocomposites for development of electrochemical biosensors, these fabricated nanomaterials have to be coated onto the electrodes using a drop-casting and/or an electrochemical method insitu on the working electrode [2,23].…”
Section: Introductionmentioning
confidence: 99%
“…In recent decades, conducting polymers have been attracted the much attention of scientists worldwide for biosensing applications thanks to their unique properties [1][2][3][4]. Pure conducting polymers are formed in various structures such as nanowires, nanotubes and nano-thin films to obtain a large surface area and a high efficiency [5,6].…”
Section: Introductionmentioning
confidence: 99%
“…Polyaniline (PANI) is a kind of polymer material with good thermal stability, high mechanical strength, and excellent compactness, and has attracted special attention from researchers in recent years. 21,22 It has been widely used in water treatment, 23,24 catalysts, [25][26][27] supercapacitors, 28,29 anticorrosion coatings, 30,31 batteries, [32][33][34] sensors, 35,36 and electromagnetic shielding materials 37 due to its superior performance. Moreover, compared with the monomer of the unsaturated polyester resin, aniline has a lower oxidation potential, and oxidative polymerization is easily initiated by APS.…”
Section: Introductionmentioning
confidence: 99%