“…The resulting 0D/1D or 0D/2D heterogeneous structure has a beneficial impact on ORR performance. 43–45…”
Section: Morphological Structure and Chemical Compositions Of Mdcnmmentioning
confidence: 99%
“…The resulting 0D/1D or 0D/2D heterogeneous structure has a beneficial impact on ORR performance. [43][44][45] 2.1.2 1D structure. The exceptional physicochemical properties exhibited by 1D carbon materials, including carbon nanorods, carbon nanowires, and CNTs, endow them with a competitive advantage as catalysts in electrochemistry.…”
Section: Morphology Design and Constructionmentioning
An in-depth analysis of the fundamental mechanism of MOF-derived carbon nanomaterials (MDCNM) for ORR promotion is presented through both the low-dimensional morphological structure and chemical composition.
“…The resulting 0D/1D or 0D/2D heterogeneous structure has a beneficial impact on ORR performance. 43–45…”
Section: Morphological Structure and Chemical Compositions Of Mdcnmmentioning
confidence: 99%
“…The resulting 0D/1D or 0D/2D heterogeneous structure has a beneficial impact on ORR performance. [43][44][45] 2.1.2 1D structure. The exceptional physicochemical properties exhibited by 1D carbon materials, including carbon nanorods, carbon nanowires, and CNTs, endow them with a competitive advantage as catalysts in electrochemistry.…”
Section: Morphology Design and Constructionmentioning
An in-depth analysis of the fundamental mechanism of MOF-derived carbon nanomaterials (MDCNM) for ORR promotion is presented through both the low-dimensional morphological structure and chemical composition.
“…93 Apart from single metal substrates, metal alloys are one of the cheapest and most commonly used substrates and have been widely explored over the past few decades. [96][97][98][99][100][101][102][103][104][105][106] For example, Kazemian et al used stainless steel as a substrate to fabricate Cu-BTC (H 3 BTC trimesic acid) crystals, as shown in Fig. 1d.…”
Section: Metal Oxides; Electrodes; Carbon-based Materials; Polymersmentioning
Metal-organic frameworks' (MOFs) potential commercial uses are intriguing. One of the existing challenges is that many sophisticated nanotechnology applications require the deposition of as-obtained MOF powder on solid substrates. It...
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