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Phase control in the colloidal synthesis of well-defined nickel sulfide nanocrystals

机译:相位控制胶体的合成定义良好的硫化镍纳米晶体

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摘要

Morphologically well-defined colloidal nanocrystals of Ni3S4, NiS, Ni9S8, and Ni3S2 were independently prepared through a solution-phase synthesis using N,N-disubstituted thioureas as the sulfur precursor. Synthetic control over phase and composition of the resulting colloidal nickel sulfide nanocrystals was achieved by primarily adjusting the reactivity of substituted thioureas as well as tuning the key reaction parameters of temperature and precursor ratio. In general, the more reactive N,N-diphenyl thiourea yields more sulfur-rich phases (Ni3S4 and NiS) while less reactive N,N-dibutyl thiourea yields sulfur-poor phases (Ni9S8 and Ni3S2). This phase control can be further tuned through the use of 1-dodecanethiol as an important secondary reactivity-directing agent. In the presence of 1-dodecanethiol, nanocrystals of more sulfur-deficient phases are prepared, while in the absence of 1-dodecanethiol, more sulfur-rich phases are prepared. Under the most sulfur-rich synthetic conditions (i.e., with N,N-diphenyl thiourea and no thiol) a phase progression from Ni3S4 to the -NiS and -NiS phases was observed upon an increase in reaction temperature and sulfur-to-nickel precursor ratio. This study establishes, for the first time, a systematic evaluation of factors that simultaneously control the phase and yield well-defined nickel sulfide nanocrystals.
机译:形态定义良好的胶体nanocrystals Ni3S4, NiS, Ni9S8 Ni3S2著作百科全书》是通过溶液相独立的准备使用合成N, N-disubstituted硫脲硫前体。阶段和组成的胶体通过硫化镍纳米晶体主要是调整取代的反应硫脲以及调优的关键反应参数的温度和前体比率。一般,无功N, N-diphenyl硫脲收益率多高硫阶段(Ni3S4和NiS)而更少的活性N, N-dibutyl硫脲产量sulfur-poor阶段(Ni9S8和Ni3S2)。通过使用控制可以进一步调优1-dodecanethiol作为一种重要的次要的reactivity-directing代理。1-dodecanethiol,纳米晶体的更多sulfur-deficient准备阶段,而在1-dodecanethiol缺失的情况下,更多的高硫准备阶段。合成条件(例如,与N, N-diphenyl硫脲和硫醇)从一个阶段发展Ni3S4 nis和nis阶段观察到在反应温度的增加和sulfur-to-nickel前体比率。了,第一次,一个系统的评价因素,同时控制阶段和收益率定义良好的硫化镍纳米晶体。

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