Scalable Route to Colloidal Ni x Co 3- x S 4 Nanoparticles with Low Dispersity Using Amino Acids

The thiospinel group of nickel cobalt sulfides (Ni Co S ) are promising materials for energy applications such as supercapacitors, fuel cells, and solar cells. Solution-processible nanoparticles of Ni Co S have advantages of low cost and fabrication of high-performance energy devices due to their hi...

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Veröffentlicht in:ACS Materials Au 2023-09, Vol.3 (5), p.501-513
Hauptverfasser: Meyer, Talisi E, Jiang, Kevin Zhijian, Peng, Ching Chun, Sam, Quynh P, Kang, Minsoo, Lynch, Reilly P, Rowell, Jonathan L, Cha, Judy, Robinson, Richard D
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Sprache:eng
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Zusammenfassung:The thiospinel group of nickel cobalt sulfides (Ni Co S ) are promising materials for energy applications such as supercapacitors, fuel cells, and solar cells. Solution-processible nanoparticles of Ni Co S have advantages of low cost and fabrication of high-performance energy devices due to their high surface-to-volume ratio, which increases the electrochemically active surface area and shortens the ionic diffusion path. The current approaches to synthesize Ni Co S nanoparticles are often based on hydrothermal or solvothermal methods that are difficult to scale up safely and efficiently and that preclude monitoring the reaction through aliquots, making optimization of size and dispersity challenging, typically resulting in aggregated nanoparticles with polydisperse sizes. In this work, we report a scalable "heat-up" method to colloidally synthesize Ni Co S nanoparticles that are smaller than 15 nm in diameter with less than 15% in size dispersion, using two inexpensive, earth-abundant sulfur sources. Our method provides a reliable synthetic pathway to produce phase-pure, low-dispersity, gram-scale nanoparticles of ternary metal sulfides. This method enhances the current capabilities of Ni Co S nanoparticles to meet the performance demands to improve renewable energy technologies.
ISSN:2694-2461
2694-2461
DOI:10.1021/acsmaterialsau.3c00016