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Miniaturized Energy Storage Devices Based on Two-Dimensional Materials

期刊

CHEMSUSCHEM
卷 13, 期 6, 页码 1420-1446

出版社

WILEY-V C H VERLAG GMBH
DOI: 10.1002/cssc.201902520

关键词

electrochemistry; energy storage; microdevices; nanostructures; semiconductors

资金

  1. National Nature Science Foundation of China (NSFC) [21903021]
  2. Innovation Platform and Talent Plan of Hunan Province [2019RS1027]
  3. Fundamental Research Funds for the Central Universities (Hunan University) [531119200114]

向作者/读者索取更多资源

A growing demand for miniaturized biomedical sensors, microscale self-powered electronic systems, and many other portable, wearable, and integratable electronic devices is continually stimulating the rapid development of miniaturized energy storage devices (MESDs). Miniaturized batteries (MBs) and supercapacitors (MSCs) were considered to be suitable energy storage devices to power microelectronics uninterruptedly with reasonable energy and power densities. However, in addition to similar challenges encountered with electrode materials in conventional energy storage devices, their performances are also greatly affected by microfabrication technologies, as well as the challenges of how to realize stable and high-performance MESDs in such a limited footprint area. Benefiting from the unique architectural engineering of two-dimensional materials and the emergence of precise and controllable microfabrication techniques, the output electrochemical performances of MSCs and MBs are improving rapidly. This minireview summarizes recent advances in MSCs and MBs built from two-dimensional materials, including electrode/device configuration designs, material synthesis, microfabrication processes, smart function incorporations, and system integrations. An introduction to configurations of the MESDs, from linear fibrous shapes, planar sandwich thin-film or interdigital structures, to three-dimensional configurations, is presented. The fundamental influences of the electrode material and configuration designs on the exhibited MB/MSC electrochemical performances are also highlighted.

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