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3D Continuously Porous Graphene for Energy Applications

期刊

ADVANCED MATERIALS
卷 34, 期 15, 页码 -

出版社

WILEY-V C H VERLAG GMBH
DOI: 10.1002/adma.202108750

关键词

3D graphene; curvature; energy conversion; energy storage; topological defects

资金

  1. Whiting School of Engineering, Johns Hopkins University
  2. National Science Foundation (NSF) [DMR-1804320]
  3. JSPS [18H05939, 19K15389]
  4. Fusion Research Funds from WPI-AIMR
  5. FRIS, Tohoku University
  6. Grants-in-Aid for Scientific Research [19K15389, 18H05939] Funding Source: KAKEN

向作者/读者索取更多资源

This article reviews the recent progress in the fabrication and application of 3D porous graphene with designable microstructures, chemistries, and properties for energy storage and conversion. The 3D graphene, synthesized through template-based and template-free methods, retains the highly conductive and mechanically robust properties of 2D graphene while offering new functionalities and opportunities.
Constructing bulk graphene materials with well-reserved 2D properties is essential for device and engineering applications of atomically thick graphene. In this article, the recent progress in the fabrications and applications of sterically continuous porous graphene with designable microstructures, chemistries, and properties for energy storage and conversion are reviewed. Both template-based and template-free methods have been developed to synthesize the 3D continuously porous graphene, which typically has the microstructure reminiscent of pseudo-periodic minimal surfaces. The 3D graphene can well preserve the properties of 2D graphene of being highly conductive, surface abundant, and mechanically robust, together with unique 2D electronic behaviors. Additionally, the bicontinuous porosity and large curvature offer new functionalities, such as rapid mass transport, ample open space, mechanical flexibility, and tunable electric/thermal conductivity. Particularly, the 3D curvature provides a new degree of freedom for tailoring the catalysis and transport properties of graphene. The 3D graphene with those extraordinary properties has shown great promises for a wide range of applications, especially for energy conversion and storage. This article overviews the recent advances made in addressing the challenges of developing 3D continuously porous graphene, the benefits and opportunities of the new materials for energy-related applications, and the remaining challenges that warrant future study.

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