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Multidimensional materials and device architectures for future hybrid energy storage

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NATURE COMMUNICATIONS
卷 7, 期 -, 页码 -

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NATURE PUBLISHING GROUP
DOI: 10.1038/ncomms12647

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资金

  1. Office of Electricity Delivery and Energy Reliability
  2. Energy Storage Systems Program
  3. Sandia National Laboratories
  4. Fluid Interface Reactions
  5. Structures and Transport (FIRST) Center
  6. Energy Frontier Research Center - U.S. Department of Energy
  7. Office of Science and Office of Basic Energy Sciences
  8. Nanostructures for Electrical Energy Storage (NEES)
  9. Energy Frontier Research Center - U.S. Department of Energy, Office of Science, Basic Energy Sciences [DESC0001160]
  10. Russian Science Foundation [14-43-00072] Funding Source: Russian Science Foundation

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Electrical energy storage plays a vital role in daily life due to our dependence on numerous portable electronic devices. Moreover, with the continued miniaturization of electronics, integration of wireless devices into our homes and clothes and the widely anticipated 'Internet of Things', there are intensive efforts to develop miniature yet powerful electrical energy storage devices. This review addresses the cutting edge of electrical energy storage technology, outlining approaches to overcome current limitations and providing future research directions towards the next generation of electrical energy storage devices whose characteristics represent a true hybridization of batteries and electrochemical capacitors.

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