Abstract
Organic framework materials constructed by covalently linking organic building blocks into framework structures are highly regarded as paragons to precisely control the material structure at the atomic level. Herein, a direct synthesis methodology is proposed as a guidance for the bulk synthesis of organic framework materials. Framework porphyrin (POF) materials are one-pot synthesized to demonstrate the advances of the direct synthesis methodology. The as-synthesized POF materials are intrinsically 2D and exhibit impressive versatility in composition, structure, morphology, and function, delivering a free-standing POF film, hybrids of POF and nanocarbon, and cobalt-coordinated POF. When applied as electrocatalysts for oxygen reduction reaction and oxygen evolution reaction, the cobalt-coordinated POF exhibits excellent bifunctional electrocatalytic performances comparable with noble-metal-based electrocatalysts. The direct synthesis methodology and resultant POF materials demonstrate the ability of controlling materials at the atomic level for energy electrocatalysis.
Original language | English |
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Article number | 1901301 |
Journal | Advanced Functional Materials |
Volume | 29 |
Issue number | 29 |
DOIs | |
Publication status | Published - 18 Jul 2019 |
Externally published | Yes |
Keywords
- 2D materials
- bifunctional oxygen electrocatalysts
- framework porphyrin
- one-pot synthesis
- oxygen reduction reaction