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This method produced electrodes composed of Fe3C nanoparticles embedded in a matrix of disordered nanocrystalline carbon with predominantly fibrous morphology.
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Scalable and compatible with large-scale manufacturing practices, this "traditional" method produces electrodes with good thermal and chemical stability as well as excellent mechanical and electrical properties.
Spray pyrolysis is a highly scalable method for producing electrode materials, which can fabricate plenty of specific structured materials such as alloys, oxides, nitrides and organic inorganic composites [116, 117, 118, 119].
The other is a commercially produced electrode made of indium tin oxide (ITO).
The method produced ultra-flat and dense perovskite capping layers atop mesoporous TiO2 films, enabling a remarkable improvement in the performance of free hole transport material (HTM) carbon electrode-based perovskite solar cells (PSCs).
The application method produced NO signals that were often preceded by large current deflections with a much faster time constant than NO-elicited electrode currents.
This method produces three ketogenic phases.
This method produces an even, smooth paste.
Both methods produce sound of equal quality.
Typical statistical methods produce limited results.
Both methods produce similar lists of targets.
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