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Issue Info: 
  • Year: 

    2023
  • Volume: 

    17
  • Issue: 

    2
  • Pages: 

    93-110
Measures: 
  • Citations: 

    0
  • Views: 

    30
  • Downloads: 

    21
Abstract: 

This paper used three magnetic adsorbents, including Polyaniline@NiFe2O4, Polyaniline@MgFe2O4, and Polyaniline@MnFe2O4 to remove congo red dye. The synthesized nanocomposites were identified using SEM, XRD, EDX, and FT-IR methods. Then the factors affecting the removal efficiency of congo red were optimized for all three adsorbents. Under optimum conditions, the removal efficiencies of congo red from aqueous media by Polyaniline@NiFe2O4, Polyaniline@MgFe2O4, and Polyaniline@MnFe2O4 were calculated as 92, 90 and 89 %, respectively. The reusability of the used nanocomposites was investigated, so 1 M HCl as a recovery agent could recover up to 4 times all three nanocomposites. The synthesized sorbents performed the removal of congo red from real samples, including well water and dyeing wastewater. The results showed that the matrix does not significantly affect the efficiency of the nanocomposites so that they could be used in real samples with complex matrices.

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Issue Info: 
  • Year: 

    2013
  • Volume: 

    16
Measures: 
  • Views: 

    99
  • Downloads: 

    70
Abstract: 

INTRODUCTION: CONDUCTING POLYMERS SUCH AS Polyaniline (PAN) AND POLYPYRROLE (PPY) HAVE BEEN RECENTLY STUDIED EXTENSIVELY BECAUSE OF REDOX REVERSIBILITY, GOOD ENVIRONMENTAL STABILITY AND ETC. PAN AROUSED A GREAT INTEREST DUE TO ITS LARGE FIELD OF APPLICATIONS SUCH AS SENSORS AND BIOSENSORS, BATTERIES AND ETC [1]. IN RECENT YEARS, THE DEVELOPMENT OF POLYMER/INORGANIC NANOCOMPOSITE MATERIALS HAVE BEEN RECEIVING SIGNIFICANT ATTENTION DUE TO VIDE RANG OF POTENTIAL APPLICATIONS IN OPTOELECTRONIC DEVICES AND IN FIELD EFFECT TRANSISTORS.AMONG THE INORGANIC MATERIALS, SOME METAL OXIDES SUCH AS TIO2, ZNO, FE3O4, MNO2 AND NIO HAVE BEEN USED FOR SYNTHESIZED OF THE NANOCOMPOSITES WITH PAN [2].HERE WE REPORT ON THE ELECTROCHEMICAL SYNTHESIZE OF PAN IN THE PRESENCE OF TIO2, ZNO AND TIO2+ZNO SEMICONDUCTORS BY POTENTIAL CYCLING ON GOLD ELECTRODE. THE RESULTING POLYMER FILMS WERE CHARACTERIZED WITH IN SITU UV-VISIBLE AND EX SITU FTIR SPECTROSCOPY, SEM, TEM, AND IN SITU CONDUCTIVITY MEASUREMENTS.

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Issue Info: 
  • Year: 

    2014
  • Volume: 

    27
  • Issue: 

    2 (TRANSACTIONS B: APPLICATIONS)
  • Pages: 

    227-238
Measures: 
  • Citations: 

    0
  • Views: 

    291
  • Downloads: 

    172
Abstract: 

Polyaniline/polystyrene (PAni/PS) composites were prepared in aqueous solution by polymerization of styrene and aniline in two-stages. Firstly, styrene polymerize using Ammonium persulfate (APS) as an oxidant in the presence of various surfactants such as poly (vinyl pyrrolidone) (PVP), hydroxypropylcellulose (HPC), poly (vinyl alcohol) (PVA) and surfactive dopant sodium dodecylbenzenesulfonate (DBSNa). In next stage, aniline polymerize using potassium iodate (KIO3) as an oxidant in the presence of PS latex. In addition, nanocomposites of Polyaniline containing nanometer-size CuO (Copper oxide) and Ag2O (Silver oxide) were synthesized by a chemical method using DBSNa as a surfactant. Products were characterized in terms of particle size, conversion of monomer to polymer, morphology, chemical structure and glass transition temperature that were dependent on the type of surfactant and metal oxide. The chemical structure, morphology and glass transition temperature of product were studied by fourier transform infrared (FTIR) spectroscopy, X_ray diffraction (XRD), scanning electron microscopy (SEM) and differential scanning calorimetery (DSC).The results show that the type and concentration of surfactant, type of metal oxide and concentration of oxidant play a major role on the surface morphology and particle size of products. The size range of the PAni/PS and PAni/metal oxide composites was about 80-240 nm and 70-140 nm, respectively.

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Issue Info: 
  • Year: 

    2012
  • Volume: 

    10
Measures: 
  • Views: 

    118
  • Downloads: 

    34
Keywords: 
Abstract: 

Polyaniline (PANI) IS ONE OF THE IMPORTANT CONDUCTING POLYMERS WHICH HAS BEEN STUDIED EXTENSIVELY FOR VARIOUS APPLICATIONS SUCH AS SENSORS, BATTERIES AND ETC. IN RECENT YEARS, THE DEVELOPMENT OF INORGANIC/POLYMER HYBRID MATERIALS HAVE BEEN RECEIVING SIGNIFICANT ATTENTION DUE TO A WIDE RANGE OF POTENTIAL APPLICATIONS IN OPTOELECTRONIC DEVICES AND IN FIELD EFFECT TRANSISTORS. IN THIS REPORT, Polyaniline, Polyaniline/TITANIUM DIOXIDE, Polyaniline/ZINC OXIDE AND A NOVEL CONDUCTING POLYMER COMPOSITE, Polyaniline/TITANIUM DIOXIDE+ZINC OXIDE, IN H2SO4 MEDIUM ON GOLD ELECTRODE ARE ELECTROCHEMICALLY SYNTHESIZED BY POTENTIAL CYCLING, RESPECTIVELY. THE COMPOSITE FILMS WERE CHARACTERIZED BY CYCLIC VOLTAMMETRY, FOURIER TRANSFORM INFRA RED (FT-IR) SPECTROSCOPY AND SCANNING ELECTRON MICROSCOPY (SEM) AND THE RESULTS WERE COMPARED WITH PANI FILMS. THE DIFFERENCES BETWEEN CATHODIC AND ANODIC PEAKS OF THREE REDOX COUPLES WERE OBTAINED FOR POLYMERIC COMPOSITES FILMS. DURING CATHODIC AND ANODIC SCANS, THE SHIFT OF POTENTIALS WERE OBSERVED FOR POLYMER COMPOSITE FILMS. THE CHARACTERISTIC FT-IR PEAKS OF PANI WERE FOUND TO SHIFT TO HIGHER WAVE NUMBER IN COMPOSITE FILMS. THESE OBSERVED EFFECTS HAVE BEEN ATTRIBUTED TO INTERACTION OF TIO2 AND ZNO PARTICLES WITH PANI MOLECULAR CHAINS. THE MORPHOLOGICAL ANALYSIS OF PANI AND Polyaniline COMPOSITES HAVE BEEN INVESTIGATED. THE COMPOSITE SEM MICROGRAPHS SUGGESTS THAT THE INORGANIC SEMICONDUCTOR PARTICLES WERE INCORPORATED IN ORGANIC CONDUCTING POLYMER, WHICH CONSEQUENTLY MODIFIES THE MORPHOLOGY OF THE FILMS SIGNIFICANTLY.

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Author(s): 

Shokouhi Rad A.

Journal: 

WATER AND WASTEWATER

Issue Info: 
  • Year: 

    2020
  • Volume: 

    31
  • Issue: 

    5
  • Pages: 

    169-183
Measures: 
  • Citations: 

    0
  • Views: 

    361
  • Downloads: 

    0
Abstract: 

Due to the importance of removing heavy ions from water samples, in the present study, a magnetic nanocomposite based on Fe3O4 particles coated with Polyaniline was developed and evaluated as a strong adsorbent to remove lead (II) ions from water and effluent samples. In order to characterize the nanocomposite, the transmission electron microscope was used to determine the exact size of the nanoparticles and the BET technique was used to determine the effective surface of adsorbent and also the CHNS and TGA analyses were used to confirm the coating of Fe3O4 magnetic nanoparticles with Polyaniline and the survey of the thermal stability of nanocomposite, respectively. The flame atomic absorption spectroscopy was used to determine the values of lead ions in the solution. Characteristics affecting lead ion removal including pH, adsorbent value and contact time at different temperatures were optimized. Optimal values of pH and adsorption rate and contact time for 100 ml of solution with an initial concentration of 50 ppm were obtained in the pH of 9, 3 mg adsorbent, and contact time of 60 minutes, respectively. Equilibrium data from adsorption studies showed that the Langmuir isotherm showed better results than the Freundlich isotherm. Also, the maximum lead adsorption capacity (II) on Polyaniline/Fe3O4 nanocomposite was 114. 9 mg of lead per gram of adsorbent.

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Issue Info: 
  • Year: 

    2012
  • Volume: 

    10
Measures: 
  • Views: 

    115
  • Downloads: 

    72
Keywords: 
Abstract: 

A NEW APPROACH IS DESCRIBED FOR SYNTHESIS OF POLY ANILINE (PAN) ON POLYELECRTROLYTE MODIFIED ELECTRODE. THE ELECTRODE WAS MODIFIED BY WATER SOLUBLE CONDUCTING POLYMER, POLY (2-METHOXY ANILINE -5- SULFONIC ACID) (PMAS). IN ORDER TO FORM A STABLE FILM OF PMAS DIFFERENT SOLVENTS WERE EXAMINED. THE FILMS CASTED FROM PMAS SOLUTIONS IN DMSO WERE FOUND TO BE STABLE IN POLYMERIZATION SOLUTION OF ANILINE. WITH CONCENTRATION FROM DMSO WAS USED AS SOLVENT RATHER THAN WATER. MODIFIED ELECTRODE WAS PREPARED BY DIRECT DROP CASTING OF A MICROLITER OF A PMAS SOLUTION (0.1-5%, W/V) ON GLASSY CARBON ELECTRODE. ELECTROCHEMICAL EXPERIMENTS SHOWED THAT EVEN AT VERY LOW CONCENTRATIONS OF ANILINE (7.5 MM), A DRAMATIC INCREASE WITH SUBSEQUENT SCANS WAS OBSERVED AND AN ADHERENT, UNIFORM AND STABLE Polyaniline FILM WAS DEPOSITED ON ELECTRODE SURFACE.THE ELECTRODEPOSITION OF THE Polyaniline MATERIAL IS ENHANCED BY THE PRESENCE OF THE ELECTRICALLY CONDUCTING PMAS POLYELECTROLYTE DOPANT, WHICH FUNCTIONS AS A MOLECULAR TEMPLATE PROVIDING SUPRAMOLECULAR PRE-ORDERING AS WELL AS SIMULTANEOUSLY FACILITATING CHARGE TRANSPORT DURING ELECTRODEPOSITION. INCREASING THE CONCENTRATION OF PMAS INCREASED THE DEGREE OF POLYMERIZATION, ALTHOUGH THE FILMS CASTED FROM PMAS SOLUTIONS WITH CONENTRATIONS MORE THAN 2.5 % (W/V) WERE NOT STABLE. POST SYNTHESIS CYCLIC VOLTAMOGRAMS OF Polyaniline SHOWED CHARACTERISTIC REDOX PAIRS OF ELECTROACTIVE POLYANLINE. THE POLYMER WAS ELECTROACTIVE IN A WIDER PH RANGE, SUITABLE FOR APPLICATIONS WHERE ELECTROACTIVITY IS NEEDED AT NEUTRAL PH. DUE TO THE PRESENCE OF NEGATIVELY CHARGED SULFONATE GROUPS IN THEIR STRUCTURE, THESE MATERIALS ARE CAPABLE OF ELECTROSTATIC INTERACTION WITH POSITIVELY CHARGED GROUPS. THE METHOD HAS THE ADVANTAGE OF MINIMIZING THE AMOUNT OF PMAS AND MONOMER FOR DEPOSITION OF A DESIRABLE CONDUCTING POLYMER FILM.

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Author(s): 

ZENGIN H. | ZHOU W. | JIN J.

Journal: 

ADVANCED MATERIALS

Issue Info: 
  • Year: 

    2002
  • Volume: 

    14
  • Issue: 

    20
  • Pages: 

    1480-1483
Measures: 
  • Citations: 

    1
  • Views: 

    122
  • Downloads: 

    0
Keywords: 
Abstract: 

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Issue Info: 
  • Year: 

    2014
  • Volume: 

    10
Measures: 
  • Views: 

    136
  • Downloads: 

    110
Abstract: 

CYCLIC VOLTAMMETRY OF Polyaniline FILM AND POLYANILIN/GRAPHENENANOCOMPOSITE ON 2B PENCIL GRAPHITE IN ACIDIC SOLUTION CONTAINING 1M KCL AS SUPPORTING ELECTROLYTE IS PERFORMED. THE ELECTROSYNTHESIS OF Polyaniline/GRAPHENENANOCOMPOSITE IN CONTRAST TO Polyaniline INDICATE THAT THE CURRENT OF REDOX PEAKS INCREASE AT OVER 20 MV WHILE THE FT-IR AND UV-VISIBLE SPECTRUMS ILLUSTRATE THAT THE CONDUCTIVITY OF Polyaniline/GRAPHENENANOCOMPOSITE IS MUCH MORE THAN Polyaniline FILM. A POSSIBLE REASON FOR THIS IS THE ATTENDANCE OF GRAPHENE NANOPARTICLES IN ELECTROCHEMICAL PERFORMANCE OF THE ELECTRODE MATERIALS.

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Issue Info: 
  • Year: 

    2012
  • Volume: 

    10
Measures: 
  • Views: 

    126
  • Downloads: 

    78
Keywords: 
Abstract: 

HOMOGENEOUS AND ADHERENT Polyaniline AND Polyaniline- MONTMORRILONITE (MMT) NANOCOMPOSITE COATING WERE ELECTROSYNTHESIZED ON STEEL 316 BY USING THE GALVANOSTATIC POLARIZATION METHOD. THE SYNTHESIZED COATING WERE CHARACTERIZED BY UV-VIS ABSORPTION SPECTROMETRY, FOURIER TRANSFORM INFRARED SPECTROSCOPY, X-RAY DIFFRACTION PATTERN AND SCANNING ELECTRON MICROSCOPY. THE CORROSION PROTECTION EFFECT OF THE COATING WAS DEMONSTRATED BY PERFORMING A SERIES OF ELECTROCHEMICAL EXPERIMENTS OF POTENTIODYNAMIC POLARIZATION TECHNIQUE TAFEL AND IMPEDANCE MEASUREMENT ON STEEL IN HCL 0.5M ELECTROLYTE. THE RESULTS OF THIS STUDY CLEARLY ASCERTAIN THAT THE PolyanilineMONTMORRILONITE NANOCOMPOSITE HAS OUTSTANDING POTENTIAL TO PROTECT THE STEEL 316 AGAINST CORROSION IN AN ACID ENVIRONMENT.

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Issue Info: 
  • Year: 

    2014
  • Volume: 

    22
Measures: 
  • Views: 

    209
  • Downloads: 

    42
Abstract: 

Polyaniline (PANI) IS AN ENVIRONMENTALLY STABLE CONDUCTING POLYMER WITH EXCELLENT ELECTRICAL, MAGNETIC AND OPTICAL PROPERTIES AND 2TPREPARED BY THE OXIDATION OF ANILINE. THE POTENTIAL APPLICATIONS OF Polyaniline INCLUDE SECONDARY BATTERIES, MOLECULAR SENSORS, ELECTROCHROMIC DISPLAYS AND MICROELECTRONIC DEVICES. IN THIS WORK WE HAVE NEW SYNTHESIZED OF Polyaniline VIA IN SITU POLYMERIZATION OF CHEMICAL OXIDATION OF ANILINE IN SOLID STATE AT ROOM TEMPERATURE BY USING 3TAMMONIUM PERSULFATEAS OXIDANT AND AND 4-AMINODIPHENYLAMINE (4-ADPA) AS INITIATOR OF POLYMERIZATION, WITHOUT ADDED ACID. THIS PROCESS, CALLED A "FALLING PH" METHOD OF PANI PREPARATION

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