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首页> 外文期刊>Chemistry of Materials: A Publication of the American Chemistry Society >Aminophosphines as Versatile Precursors for the Synthesis of Metal Phosphide Nanocrystals
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Aminophosphines as Versatile Precursors for the Synthesis of Metal Phosphide Nanocrystals

机译:氨基磷作为合成金属磷化物纳米晶体的通络前体

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We have broadened the scope of the amino-phosphine precursor chemistry that has been developed for InP quantum dots to the synthesis of cadmium, zinc, cobalt, and nickel phosphide nanocrystals. The generalized synthetic conditions involve thermolysis of the appropriate MX2 salt with tris-diethylaminophosphine in a long chain primary amine. The resulting Cd3P2 nanocrystals exhibit size tuning effects based on the metal halide reactivity. P-31 NMR studies show that the II-V materials form via the previously described mechanism observed for InP, demonstrating the invariance of this chemistry to the metal valence. We also demonstrate that electrocatalytically active transition metal phosphides, specifically Co2P, CoP, and Ni2P, can be produced using this synthetic method at relatively mild temperatures and in high yields.
机译:我们已经扩大了氨基膦前体化学的范围,该化学已开发为InP量子点以合成镉,锌,钴和磷化镍纳米晶体的合成。 广义合成条件涉及在长链伯胺中用Tris-二乙胺膦的合适Mx2盐的热解。 得到的CD3P2纳米晶体基于金属卤化物反应性表现出尺寸调谐效果。 P-31 NMR研究表明,通过预先描述的机制,II-V材料形式形成为INP,证明了该化学对金属价的不变性。 我们还证明了可以在相对温和的温度和高产率下使用该合成方法生产电催化活性过渡金属磷酸,特别是CO 2P,COP和Ni2P。

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