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Fabrication and Characterization of Nano Carbon-based Electrochemical Double-layer Capacitors

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Release : 2015
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Kind : eBook
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Book Synopsis Fabrication and Characterization of Nano Carbon-based Electrochemical Double-layer Capacitors by : Jin Hee Kang

Download or read book Fabrication and Characterization of Nano Carbon-based Electrochemical Double-layer Capacitors written by Jin Hee Kang. This book was released on 2015. Available in PDF, EPUB and Kindle. Book excerpt: Porous electrode is a key component in electrochemical double layer capacitors (EDLCs), also called supercapacitors, which provides effective charge storage sites and ion transport channels along the electric double-layer interface between a solid electrode surface and liquid electrolyte. In particular, the micro-structure of an electrode is extremely important to optimize the ion's transport channel and subsequently increasing the ion storage capacity on porous electrodes. This research focuses on three types of porous carbon materials, activated carbon (AC), graphene and single-walled carbon nanotube (SWCNT), with varying surface area and internal porosity as electrode materials. Depending on the type of carbon materials, three different fabrication methods, cast-coating, electrophotretic deposition (EPD) and vacuum filtration deposition, were developed to exploit the unique properties of electrodes. Their structural, electrochemical, thermodynamic properties were characterized, and the temperature/frequency-dependent capacitive and resistive behaviors were correlated to the microstructures, BET surface area, pore size and pore size distribution (PSD) of the electrodes. Under various operating temperatures between -30 °C and 60 °C and frequency operations, these electrochemical parameters were quantified using cyclic voltammetry (CV), constant current charging/discharging (CCD) measurements and electrochemical impedance spectroscopy (EIS). The differences in their temperature/frequency-dependent characteristics, including their current response to high scan rates, capacitance retention, resistance variation, and degradation of energy and power densities, were addressed by investigating ion kinetics and transport into the micro-, or meso-pores of the electrodes. An equivalent circuit model for an EDLC device was proposed through analyzing the EIS measurements. This model was developed based on the Grahame theory, while the effects of charge diffusion and the ion adsorption at the double-layer interface and bulk media were investigated. This circuit model, upon its validation against the EIS data, was successfully applied to characterize practical EDLC devices. Experimental results were obtained from different EDLC cells consisting of activated carbon-based electrodes and two distinct electrolytes, aqueous (H2SO4) and organic (Et4NBF4/PC). The model predicted the useful parameters (such as charge transfer, diffusion, adsorption and bulk media impedance) which help interpret electrochemical processes at the electrode/electrolyte interface. The quantitative dependence of impedance on the applied electrode potential was analyzed for the two electrolytes during charging/discharging, and its correlation with the internal resistance (referred ESR) was derived. Their temperature-dependent electrochemical properties were also investigated using a specified characterization procedure, and the capacitance, internal resistance and energy/power densities of the two capacitors were quantified. The temperature dependency of their impedances was analyzed through simulations of the EIS data by the proposed equivalent circuit model. The simulated impedances were then utilized to address the performance discrepancies between the two electrolytes.

Synthesis and Characterization of Electrochemical Double Layer Capacitors Using Aligned Architectures of Carbon Nanotubes

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Release : 2008
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Book Synopsis Synthesis and Characterization of Electrochemical Double Layer Capacitors Using Aligned Architectures of Carbon Nanotubes by : Rakesh Kumar Shah

Download or read book Synthesis and Characterization of Electrochemical Double Layer Capacitors Using Aligned Architectures of Carbon Nanotubes written by Rakesh Kumar Shah. This book was released on 2008. Available in PDF, EPUB and Kindle. Book excerpt: Electrochemical double layer capacitors, (EDLC's or supercapacitors) have received a lot of attention as viable electrical energy storage devices due to their ability for delivering high powers. Supercapacitor devices were fabricated using freestanding aligned multiwall carbon nanotubes (AMWNTs) as well as AMWNTs grown on metallic alloy (inconel 600) substrates. A novel technique of air assisted chemical vapor deposition (CVD) method was employed for the synthesis of the AMWNTs. The carbon nanotubes (CNTs) were characterized by scanning electron microscope (SEM) and transmission electron microscope (TEM). The performances of the supercapacitor devices were tested using a variety of standard techniques such as cyclic voltammetry, galvanostatic constant current charge/discharge, and impedance spectroscopy. The maximum value of specific capacitance, measured at 5 mA constant discharge current, for various devices were in the range of 14.6-21.57 F/g for the supercapacitors fabricated from CNT grown on an inconel substrate. The maximum value of energy density and power density of the whole capacitor devices were 1.48 Wh/Kg and 2695.87 W/Kg, respectively. These results show that the electrodes fabricated from Inconel sheets with AMWNT grown directly on them have the potential to be superb electrode material for the fabrication of high performance EDLC's.

Fabrication and Characterization of Graphene Based 2D Materials for Supercapacitors

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Release : 2018
Genre : Graphene
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Book Synopsis Fabrication and Characterization of Graphene Based 2D Materials for Supercapacitors by : Anishkumar Manoharan

Download or read book Fabrication and Characterization of Graphene Based 2D Materials for Supercapacitors written by Anishkumar Manoharan. This book was released on 2018. Available in PDF, EPUB and Kindle. Book excerpt: Supercapacitors have attracted a lot attention due to their efficient energy storage. In comparison to batteries, supercapacitors have high capacitance, energy, and power densities per unit mass than conventional capacitors. Carbon based materials are most promising in supercapacitor application due to their outstanding physical and electrochemical behavior. In this work, a facile method to synthesize a nanocomposite electrode consisting of annealed carbon from carbon ink and MoS2 was demonstrated. Effects of various aqueous and solid electrolytes were studied. It was found that the nanocomposite electrode with 10% MoS2 and 1M Na2SO4 as the aqueous electrolyte tested using the three electrode method exhibited a capacitance of 207.5 F/g at a current density of 0.5 A/g. However, with the influence of K+ ions, the 10% MoS2 nanocomposite electrode based electric double layer (EDL) capacitor displayed a comparatively higher capacitance of 10.1 F/g at a current density of 1 A/g with 0.5 M K2SO4 as the aqueous electrolyte. The button cell EDL capacitor performance was further improved up to 50% using 1 M Na2SO4 aqueous electrolyte (15.2 F/g at a current density of 1 A/g) in comparison to using 0.5 M Na2SO4 aqueous electrolyte (4 F/g at a current density of 1 A/g). Pouch cell supercapacitors were fabricated using both aqueous and solid electrolytes which had almost similar overall performance. A MoS2/annealed carbon nanocomposite based supercapacitor with solid electrolyte which possesses capacitance and energy density of 10.6 F/g and 5.9 Wh/Kg, respectively, was demonstrated. A cylindrical cell supercapacitor was fabricated using 1M Na2SO4 as the aqueous electrolyte and yielded capacitance and energy density of 6.7 F/g and 4.9 Wh/Kg, respectively, at a current density of 1 A/g.

Supercapacitors

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Release : 2013-04-02
Genre : Technology & Engineering
Kind : eBook
Book Rating : 68X/5 ( reviews)

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Book Synopsis Supercapacitors by : Francois Beguin

Download or read book Supercapacitors written by Francois Beguin. This book was released on 2013-04-02. Available in PDF, EPUB and Kindle. Book excerpt: Supercapacitors are a relatively new energy storage system that provides higher energy density than dielectric capacitors and higher power density than batteries. They are particularly suited to applications that require energy pulses during short periods of time, e.g., seconds or tens of seconds. They are recommended for automobiles, tramways, buses, cranes, fork-lifts, wind turbines, electricity load leveling in stationary and transportation systems, etc. Despite the technological maturity of supercapacitors, there is a lack of comprehensive literature on the topic. Many high performance materials have been developed and new scientific concepts have been introduced. Taking into account the commercial interest in these systems and the new scientific and technological developments now is the ideal time to publish this book, capturing all this new knowledge. The book starts by giving an introduction to the general principles of electrochemistry, the properties of electrochemical capacitors, and electrochemical characterization techniques. Electrical double layer capacitors and pseudocapacitors are then discussed, followed by the various electrolyte systems. Modelling, manufacture of industrial capacitors, constraints, testing, and reliability as well as applications are also covered. 'Supercapacitors - Materials, Systems, and Applications' is part of the series on Materials for Sustainable Energy and Development edited by Prof. G.Q. Max Lu. The series covers advances in materials science and innovation for renewable energy, clean use of fossil energy, and greenhouse gas mitigation and associated environmental technologies.

Carbon Based Nanomaterials for Advanced Thermal and Electrochemical Energy Storage and Conversion

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Release : 2019-07-20
Genre : Science
Kind : eBook
Book Rating : 844/5 ( reviews)

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Book Synopsis Carbon Based Nanomaterials for Advanced Thermal and Electrochemical Energy Storage and Conversion by : Cheng-Te Lin

Download or read book Carbon Based Nanomaterials for Advanced Thermal and Electrochemical Energy Storage and Conversion written by Cheng-Te Lin. This book was released on 2019-07-20. Available in PDF, EPUB and Kindle. Book excerpt: Carbon Based Nanomaterials for Advanced Thermal and Electrochemical Energy Storage and Conversion presents a comprehensive overview of recent theoretical and experimental developments and prospects on carbon-based nanomaterials for thermal, solar and electrochemical energy conversion, along with their storage applications for both laboratory and industrial perspectives. Large growth in human populations has led to seminal growth in global energy consumption, hence fossil fuel usage has increased, as have unwanted greenhouse gases, including carbon dioxide, which results in critical environmental concerns. This book discusses this growing problem, aligning carbon nanomaterials as a solution because of their structural diversity and electronic, thermal and mechanical properties. Provides an overview on state-of-the-art carbon nanomaterials and key requirements for applications of carbon materials towards efficient energy storage and conversion Presents an updated and comprehensive review of recent work and the theoretical aspects on electrochemistry Includes discussions on the industrial production of carbon-based materials for energy applications, along with insights from industrial experts

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