4.8 Review

Integration: An Effective Strategy to Develop Multifunctional Energy Storage Devices

Journal

ADVANCED ENERGY MATERIALS
Volume 6, Issue 4, Pages -

Publisher

WILEY-V C H VERLAG GMBH
DOI: 10.1002/aenm.201501867

Keywords

integration; lithium ion batteries; supercapacitors; high performance; energy storage

Funding

  1. NSFC [21225417, 51403038]
  2. MOST [2011CB932503]
  3. STCSM [15XD1500400]
  4. Changjiang Chair Professor Program
  5. Program for Outstanding Young Scholars from Organization Department of the CPC Central Committee

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Energy storage devices are arousing increasing interest due to their key role in next-generation electronics. Integration is widely explored as a general and effective strategy aiming at high performances. Recent progress in integrating a variety of functions into electrochemical energy storage devices is carefully described. Through integration at the level of materials: flexible, stretchable, responsive, and self-healing devices are discussed to highlight the state-of-the-art multi-functional electronics. Through the integration at the level of devices, the incorporation of photovoltaic and piezoelectric devices is detailed to reflect the advances in self-powering electronics. Integrated energy storage devices are presented for wearable applications to indicate a new growth direction. The main challenges and important directions are summarized to offer some useful clues for future development.

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