Polyindole (Pind) is one of the rising conducting polymers (CPs) finding application in energy, sensors, biomedicine, corrosion protection, and catalysis. Pind and its composites of carbon, metal oxides and transitional metal dichalcogenides are gaining enormous attention as electrodes in batteries and supercapacitors. Herein, the methods to synthesize (polymerize) and utilize Pind-based electrodes in batteries and supercapacitors are systematically reviewed. A critical perspective and future works to be done to push the performance of these electrodes for electrochemical energy storage are also discussed
Energy is a requisite resource relied upon at a global scale by every household, business, and insti...
Energy storage systems such as ultracapacitors (UCs) have gained popularity due to their combination...
Poly[6,6′-bis(ethylene-3,4-dioxythien-2-yl)]-<i>N</i>,<i>N</i>′-dialkylisoindigo (PBEDOT-iI) was s...
Polyindole(Pind) is one of the conducting polymers (CPs) which previously was less studied but of re...
The demand for energy storage supercapacitor devices has increased interest in completing all innova...
The properties of Polyindole (Pind) such as high redox activity, thermal stability, and slow degrada...
Recent advancements in nanotechnology have resulted in the development of new materials and a greate...
In recent years, the rapid development of electric vehicles, smart grids, and portable electronic de...
177 p.Conducting polymers, such as poly(3,4-ethylenedioxythiophene) (PEDOT), are attractive material...
Poly(ionic liquid)s (PILs) are a subclass of polyelectrolytes that gained an enabling role in many f...
For the first time, poly-o-phenylenediamine (PoPD) bulk material was electrochemically synthesized u...
The charge storage on organic polymers has led to increasing application of these new materials such...
Scientists have categorized conductive polymers as materials having strongly reversible redox behavi...
This thesis describes the design of organic electrode materials for energy storage devices and the i...
Electrodes in batteries and supercapacitors generally contain inert binders to maintain their struct...
Energy is a requisite resource relied upon at a global scale by every household, business, and insti...
Energy storage systems such as ultracapacitors (UCs) have gained popularity due to their combination...
Poly[6,6′-bis(ethylene-3,4-dioxythien-2-yl)]-<i>N</i>,<i>N</i>′-dialkylisoindigo (PBEDOT-iI) was s...
Polyindole(Pind) is one of the conducting polymers (CPs) which previously was less studied but of re...
The demand for energy storage supercapacitor devices has increased interest in completing all innova...
The properties of Polyindole (Pind) such as high redox activity, thermal stability, and slow degrada...
Recent advancements in nanotechnology have resulted in the development of new materials and a greate...
In recent years, the rapid development of electric vehicles, smart grids, and portable electronic de...
177 p.Conducting polymers, such as poly(3,4-ethylenedioxythiophene) (PEDOT), are attractive material...
Poly(ionic liquid)s (PILs) are a subclass of polyelectrolytes that gained an enabling role in many f...
For the first time, poly-o-phenylenediamine (PoPD) bulk material was electrochemically synthesized u...
The charge storage on organic polymers has led to increasing application of these new materials such...
Scientists have categorized conductive polymers as materials having strongly reversible redox behavi...
This thesis describes the design of organic electrode materials for energy storage devices and the i...
Electrodes in batteries and supercapacitors generally contain inert binders to maintain their struct...
Energy is a requisite resource relied upon at a global scale by every household, business, and insti...
Energy storage systems such as ultracapacitors (UCs) have gained popularity due to their combination...
Poly[6,6′-bis(ethylene-3,4-dioxythien-2-yl)]-<i>N</i>,<i>N</i>′-dialkylisoindigo (PBEDOT-iI) was s...