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LH14273

Construction and electrochemical properties of supercapacitors for high efficiency energy storage systems

Project goals

(1) Preparation method with low-cost and high-quality for nanocarbon-supported ?-conjugated polymer composites will be explored. The growth mechanism of?-conjugated polymers on the surface of nanocarbons can be ascertained and the morphology and structure of ?-conjugated polymers can be effectively control and research into the growth mechanism of ?-conjugated conducting polymer on nanocarbons. (2) The energy storage mechanism of nanocarbon-supported ?-conjugated polymer composites will be revealed. Theinfluence of thermal and electrochemical treatment on the cycling stability of the composite materials will be investigated. (3) The fabrication technology of supercapacitors with high energy density will be exploited and their applications in electrical vehicles and renewable energy storage systems will be promoted.

Keywords

Nanocarbon material?-Conjugated polymerSupercapacitorEnergy storage

Public support

  • Provider

    Ministry of Education, Youth and Sports

  • Programme

    KONTAKT II

  • Call for proposals

    KONTAKT II 4 (SMSM2014LH4)

  • Main participants

    Univerzita Tomáše Bati ve Zlíně / Fakulta technologická

  • Contest type

    VS - Public tender

  • Contract ID

    MSMT-9919/2014-1

Alternative language

  • Project name in Czech

    Konstrukce a elektrochemické vlastnosti superkondenzátorů pro vysoce efektivní ukládání energie

  • Annotation in Czech

    Výstupy během řešení projektu budou: 1) Nové znalosti v oblasti syntézy levných, vysoce účinných nanouhlíkových ?-konjugovaných polymerních kompozitů. Identifikace mechanismu růstu ?-konjugovaných polymerů na povrchu elektrod, morfologie a struktury ?-konjugovaných polymerů. 2) Nové znalosti v oblasti mechanismu ukládání energie u nanouhlíkových ?-konjugovaných polymerních kompozitů a poznatky o vlivu tepelné či elektrochemické zátěže, včetně opakovaných zátěží. 3) Nové znalosti o možnostech využití nanouhlíkových ?-konjugovaných polymerních kompozitů vyvinutých v rámci tohoto projektu v praxi.

Scientific branches

  • R&D category

    ZV - Basic research

  • CEP classification - main branch

    JI - Composite materials

  • CEP - secondary branch

    CG - Electrochemistry

  • CEP - another secondary branch

    CD - Macromolecular chemistry

  • 10404 - Polymer science
    10405 - Electrochemistry (dry cells, batteries, fuel cells, corrosion metals, electrolysis)
    20505 - Composites (including laminates, reinforced plastics, cermets, combined natural and synthetic fibre fabrics; filled composites)

Completed project evaluation

  • Provider evaluation

    V - Vynikající výsledky projektu (s mezinárodním významem atd.)

  • Project results evaluation

    Different types of SCs electrode materials based on carbon modified by redox-active materials, conducting polymers and transition metal oxides, have been obtained and characterized according to the electrochemical capacitance, cycling stability, flexibility. The good electrochemical properties of electrode materials obtained make them promising electrode materials for SCs.

Solution timeline

  • Realization period - beginning

    Apr 1, 2014

  • Realization period - end

    Dec 31, 2016

  • Project status

    U - Finished project

  • Latest support payment

    Feb 18, 2016

Data delivery to CEP

  • Confidentiality

    S - Úplné a pravdivé údaje o projektu nepodléhají ochraně podle zvláštních právních předpisů

  • Data delivery code

    CEP17-MSM-LH-U/01:1

  • Data delivery date

    Jun 23, 2017

Finance

  • Total approved costs

    1,797 thou. CZK

  • Public financial support

    1,797 thou. CZK

  • Other public sources

    0 thou. CZK

  • Non public and foreign sources

    0 thou. CZK

Basic information

Recognised costs

1 797 CZK thou.

Public support

1 797 CZK thou.

100%


Provider

Ministry of Education, Youth and Sports

CEP

JI - Composite materials

Solution period

01. 04. 2014 - 31. 12. 2016