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      Energy storage: The future enabled by nanomaterials

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      Science
      American Association for the Advancement of Science (AAAS)

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          Abstract

          Lithium-ion batteries, which power portable electronics, electric vehicles, and stationary storage, have been recognized with the 2019 Nobel Prize in chemistry. The development of nanomaterials and their related processing into electrodes and devices can improve the performance and/or development of the existing energy storage systems. We provide a perspective on recent progress in the application of nanomaterials in energy storage devices, such as supercapacitors and batteries. The versatility of nanomaterials can lead to power sources for portable, flexible, foldable, and distributable electronics; electric transportation; and grid-scale storage, as well as integration in living environments and biomedical systems. To overcome limitations of nanomaterials related to high reactivity and chemical instability caused by their high surface area, nanoparticles with different functionalities should be combined in smart architectures on nano- and microscales. The integration of nanomaterials into functional architectures and devices requires the development of advanced manufacturing approaches. We discuss successful strategies and outline a roadmap for the exploitation of nanomaterials for enabling future energy storage applications, such as powering distributed sensor networks and flexible and wearable electronics.

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          • Record: found
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          Materials science. Where do batteries end and supercapacitors begin?

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            • Record: found
            • Abstract: not found
            • Article: not found

            Li-ion battery materials: present and future

              Bookmark
              • Record: found
              • Abstract: not found
              • Article: not found

              A high-capacity and long-life aqueous rechargeable zinc battery using a metal oxide intercalation cathode

                Bookmark

                Author and article information

                Journal
                Science
                Science
                American Association for the Advancement of Science (AAAS)
                0036-8075
                1095-9203
                November 21 2019
                November 22 2019
                November 21 2019
                November 22 2019
                : 366
                : 6468
                : eaan8285
                Article
                10.1126/science.aan8285
                31753970
                2dd9f310-7542-4739-b391-8d4eb986e982
                © 2019

                http://www.sciencemag.org/about/science-licenses-journal-article-reuse

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