Abstract

As the human population increases, there is invariably excessive demand for energy sources, thus making it a fundamental need. The basic use of supercapacitors is the storage of energy. But self-discharge is caused when no external power or internal battery is charging them. This clearly reduces their efficiency. It has been found that self-discharge can be reduced to a great extent by employing liquid crystals (LC). But the effect of LC in enhancing the supercapacitor properties has not been discussed. So here, the naturally available bentonite clay is analyzed for its lyotropic liquid crystalline (LLC) properties. It showed liquid crystalline properties at 0.055 g/cm3 in 0.2 M Na2SO4 solvent. It is characterized by a polarised optical microscope (POM). These LCs are added as an additive electrolyte to the supercapacitors. The electrode materials used for supercapacitors are a composite of activated carbon and polyaniline. When compared, the supercapacitor properties were enhanced with a decrease in IR drop in supercapacitors containing bentonite lyotropic liquid crystal, producing a specific capacitance of 237.5 F/g at a current density of 0.5 mA/cm3. The electrochemical behavior of the supercapacitors is determined by cyclic voltammetry, electrochemical impedance spectroscopy, and galvanostatic charge-discharge cycling techniques.Graphical

Highlights

  • Supercapacitors are the next-generation energy storage device

  • For the liquid crystal analysis under polarised optical microscope (POM), the exfoliated clay was dissolved in sodium sulphate (­Na2SO4) solvent

  • Critical micelle concentration (CMC) is an important parameter that determines the formation of lyotropic liquid crystals

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Summary

Introduction

Supercapacitors are the next-generation energy storage device. Their main aim is to reconcile the seemingly incompatible conventional capacitor, which has high power density, and rechargeable batteries, which have high energy density, bridging the gap.[1]. Keywords Bentonite clay · liquid crystals · activated carbon · polyaniline · supercapacitors Naturally available Bentonite clay, possessing lyotropic liquid crystal properties with electrorheological response, was used to analyze its effect as an additive electrolyte in supercapacitors containing activated carbon-polyaniline composite electrodes.

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