Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Pani-Based Nanocomposites for Electrical Applications: A Review

View through CrossRef
Including supercapacitors, rechargeable batteries, and fuel cells, conducting polyaniline (PANI) has been widely used in electrochemical energy storage and conversion technologies due to its high conductivity, ease of synthesis, high flexibility, low cost, and distinctive redox properties. Because of its poor stability as a super-capacitive electrode, pure PANI cannot keep up with the rising demands for more N-active sites, better power/energy densities, and more stable molecular structures. These drawbacks as a super-capacitive electrode can be overcome by combining PANI with other active materials such as carbon compounds, metal compounds, and other conducting polymers (CPs). Recent PANI research focuses mainly on PANI-modified composite electrodes and supported composite electrocatalysts for fuel cells and rechargeable batteries, respectively. Due to the synergistic effect, PANI-based composites with various unique structures have shown superior electrochemical performance in supercapacitors, rechargeable batteries, and fuel cells. PANI typically functions as a conductive layer and network in different PANI-based composite structures. This review also discusses N-doped carbon materials produced from PANI because they are frequently employed as metal-free electrocatalysts for fuel cells. We conclude by providing a quick summary of upcoming developments and future research directions in PANI
Title: Pani-Based Nanocomposites for Electrical Applications: A Review
Description:
Including supercapacitors, rechargeable batteries, and fuel cells, conducting polyaniline (PANI) has been widely used in electrochemical energy storage and conversion technologies due to its high conductivity, ease of synthesis, high flexibility, low cost, and distinctive redox properties.
Because of its poor stability as a super-capacitive electrode, pure PANI cannot keep up with the rising demands for more N-active sites, better power/energy densities, and more stable molecular structures.
These drawbacks as a super-capacitive electrode can be overcome by combining PANI with other active materials such as carbon compounds, metal compounds, and other conducting polymers (CPs).
Recent PANI research focuses mainly on PANI-modified composite electrodes and supported composite electrocatalysts for fuel cells and rechargeable batteries, respectively.
Due to the synergistic effect, PANI-based composites with various unique structures have shown superior electrochemical performance in supercapacitors, rechargeable batteries, and fuel cells.
PANI typically functions as a conductive layer and network in different PANI-based composite structures.
This review also discusses N-doped carbon materials produced from PANI because they are frequently employed as metal-free electrocatalysts for fuel cells.
We conclude by providing a quick summary of upcoming developments and future research directions in PANI.

Related Results

Anticorrosive and Morphological Properties of Polyaniline/Polyvinyl Chloride Blend on AA7075-T6
Anticorrosive and Morphological Properties of Polyaniline/Polyvinyl Chloride Blend on AA7075-T6
Introduction Aluminium alloys are lightweight materials with good mechanical properties widely used in automotive and aerospace industries. Polyanili...
PENGARUH VARIASI PENAMBAHAN MASSA PANI TERHADAP KONDUKTIVITAS NANOFIBER PVA/PANI
PENGARUH VARIASI PENAMBAHAN MASSA PANI TERHADAP KONDUKTIVITAS NANOFIBER PVA/PANI
Abstrak Polianilin adalah salah satu polimer konduktif yang memiliki konduktivitas relatif tinggi dan banyak dikembangkan karena tahapan sintesisnya yang mudah. PANI dapat dibentu...
Synthesis and Characterization of a Novel Nanosized Polyaniline
Synthesis and Characterization of a Novel Nanosized Polyaniline
Polyaniline (PANI) is a conductive polymer easily converted into a conducting state. However, its limited mechanical properties have generated interest in fabricating PANI composit...
Cloisite 20A Based Polyaniline Nanocomposites for Nitrogen Dioxide (No2) Gas Sensors
Cloisite 20A Based Polyaniline Nanocomposites for Nitrogen Dioxide (No2) Gas Sensors
Compacted polyaniline (PANI)/Layered silicate nanocomposites have been successfully prepared by simple in situ, core-shell, and ex situ polymerization routes using AnHCl as a prede...
FABRICATION OF ULTRAFILTRATION MEMBRANE USING ADDTIVE TO EXTRACT HORMONE FROM POULTRY WASTEWATER
FABRICATION OF ULTRAFILTRATION MEMBRANE USING ADDTIVE TO EXTRACT HORMONE FROM POULTRY WASTEWATER
Steroidal hormones such as 17β-estradiol produced by humans and animals are regularly being released into the environment in their active forms. As the demand of chicken is increas...
EPD Electronic Pathogen Detection v1
EPD Electronic Pathogen Detection v1
Electronic pathogen detection (EPD) is a non - invasive, rapid, affordable, point- of- care test, for Covid 19 resulting from infection with SARS-CoV-2 virus. EPD scanning techno...
Structural and electronic properties of PANI-ZnO-TiO2 nanocomposite
Structural and electronic properties of PANI-ZnO-TiO2 nanocomposite
The nanocomposites of doped Polyaniline (PANI) with ZnO-TiO2 nanoparticles have been prepared by in-situ polymerization method. The structural properties of synthesized PANI and PA...

Back to Top