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Revision as of 12:31, 14 October 2020 by DG Regio (talk | contribs) (‎Changed label, description and/or aliases in 1 language: remove_english_label)
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Project in Poland financed by DG Regio
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Project in Poland financed by DG Regio

    Statements

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    4,627,932.0 zloty
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    1,110,703.68 Euro
    13 January 2020
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    4,819,110.0 zloty
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    1,156,586.4 Euro
    13 January 2020
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    96.03 percent
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    1 September 2017
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    31 August 2021
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    POLITECHNIKA WARSZAWSKA
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    The main goal of the project is to answer the following question: is the nanocomposite material based on plastics and graphene falkes fabricated using plastic injection molding processes suitable for application in future EMI shielding technology? The goal will be achieved by realization of the following scientific and technological minor objectives: development of state-of-the-art and cheap method for graphene flakes production using liquid phase exfoliation approach, development of a method of fabrication graphene/plastic nanocomposite employing plastic injection molding processes, study fundamental properties of the nanocomposite and their influence to shielding efficiency parameter, also as a function of formulation and structure. The results of the project may offer an alternative approach to solve the problem of the protection against electromagnetic radiation in the surrounding environment which may affect adversely both the work of any electronic equipment and living organism. (Polish)
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    The main goal of the project is to answer the following question: is the nanocomposite material based on plastics and graphene falkes fabricated using plastic injection molding processes suitable for application in future EMI shielding technology? The goal will be achieved by realisation of the following scientific and technological minor objectives: development of state-of-the-art and cheap method for graphene flakes production using liquid phase Exfoliation approach, development of a method of fabrication graphene/plastic nanocomposite employing plastic injection molding processes, study fundamental properties of the nanocomposite and their influence to shielding efficiency parameter, also as a function of formulation and structure. The results of the project may offer an alternative approach to solve the problem of the protection against electromagnetic radiation in the surrounding environment which may affect adversely both the work of any electronic equipment and living organism. (English)
    14 October 2020
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    Identifiers

    POIR.04.04.00-00-3C25/16
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