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      Multifunctional and Physically Transient Supercapacitors, Triboelectric Nanogenerators, and Capacitive Sensors

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          Quantifying the triboelectric series

          Triboelectrification is a well-known phenomenon that commonly occurs in nature and in our lives at any time and any place. Although each and every material exhibits triboelectrification, its quantification has not been standardized. A triboelectric series has been qualitatively ranked with regards to triboelectric polarization. Here, we introduce a universal standard method to quantify the triboelectric series for a wide range of polymers, establishing quantitative triboelectrification as a fundamental materials property. By measuring the tested materials with a liquid metal in an environment under well-defined conditions, the proposed method standardizes the experimental set up for uniformly quantifying the surface triboelectrification of general materials. The normalized triboelectric charge density is derived to reveal the intrinsic character of polymers for gaining or losing electrons. This quantitative triboelectric series may serve as a textbook standard for implementing the application of triboelectrification for energy harvesting and self-powered sensing.
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            A breathable, biodegradable, antibacterial, and self-powered electronic skin based on all-nanofiber triboelectric nanogenerators

            A breathable, biodegradable, antibacterial, and self-powered skin is developed.
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              Biodegradable and flexible arterial-pulse sensor for the wireless monitoring of blood flow

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                Author and article information

                Contributors
                (View ORCID Profile)
                Journal
                Advanced Functional Materials
                Adv Funct Materials
                Wiley
                1616-301X
                1616-3028
                January 2022
                October 03 2021
                January 2022
                : 32
                : 1
                : 2106066
                Affiliations
                [1 ]Department of Metallurgical and Materials Engineering Middle East Technical University (METU) Ankara 06800 Turkey
                [2 ]Energy Storage Materials and Devices Research Center (ENDAM) Middle East Technical University (METU) Ankara 06800 Turkey
                Article
                10.1002/adfm.202106066
                b0044375-fcdd-4ce1-8389-e387418162ed
                © 2022

                http://onlinelibrary.wiley.com/termsAndConditions#vor

                http://doi.wiley.com/10.1002/tdm_license_1.1

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