4.5 Article

Accessible 3D Integrative Paper Electrode Shapes: All-Carbon Dual-Ion Batteries with Optimum Packaging Performances

Journal

CHEMELECTROCHEM
Volume 4, Issue 12, Pages 3238-3243

Publisher

WILEY-V C H VERLAG GMBH
DOI: 10.1002/celc.201700752

Keywords

dual-ion batteries; carbon; integrated electrode; ionic liquid; intercalation

Funding

  1. National Key RAMP
  2. D Program of China [2016YFA0200400]
  3. NSFC [51372095]
  4. Graduate Innovation Fund of Jilin University [2017036]
  5. Special Funding for Academic Leaders

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Dual-ion batteries are promising devices, owing to their compatibility of high energy density and high power density, provide that the volume expansion of positive graphite and the decomposition of the electrolyte are well addressed. Herein, we report a facile strategy of using low-cost carbon fiber paper for package enhancement of dual-ion batteries. The three-dimensional structure offers both conductivity and structure integrity, while the highly graphitic fiber paper endows the high intercalation potential towards high energy density. High stability results from such integrative electrode structure. Matching with electrical double-layer capacitive graphene and ionic liquids, with a wide electrochemical stability window, a dual-ion battery has been fabricated to achieve a specific energy of 149 Wh/kg at a specific power of 1011 W/kg, and the specific energy retains 85% after 1000 cycles. This accessible 3D paper electrode provides a new route for an integral electrode construct that can be used in ultrastable, high-efficiency energy-storage devices.

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