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Synthesis and Characterization of Thiolate-Oxo Ligated Zinc Alkyl Derivatives for Production of Zn-Based Nanoparticles

机译:用于生产锌基纳米粒子的硫醇盐-氧化的锌烷基衍生物的合成与表征

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摘要

A series of mercapto-oxo containing reagents [3-mercaptopropionic acid (H2-3MPA), 4-mercaptophenol (H2-4MP), 2-mercaptopyridine-N-oxide (H-2MPO)] was reacted with diethyl zinc (ZnEt2) in hexanes/pyridine (py) to yield {(μ4-3MPA)[Zn(Et)(py)]4}∞ (>1), [(py)2(Et)Zn(μ3-4MP)Zn(Et)(py)]2 (>2), and (2MPO)Zn(Et)py (>3). For polymeric >1, each of the functional sites of the 3MPA was bound to four tetrahedral (Td) coordinated Zn(Et)(py) subunits. The sulfur of the 3MPA bridges two of the ‘Zn(Et)(py)’ subunits, which are also bridged by the two carboxylate oxygens of another 3MPA to propagate the chain. In contrast, >2 forms a discrete tetranuclear species consisting of two Zn(Et)(py) moieties bridged by the oxygens of two 4MP ligands with the thiolate sites of each terminated by Zn(Et)(py)2 moieties. Compound >3 adopts a monomeric species using a chelating 2MPO, a terminal Et, and a bound py to fill the Td coordination of the Zn metal center. Compounds >1 - 3 were then used to generate nanoparticles via solution precipitation and solvothermal routes to determine the effect these precursors have on the morphology and composition of the final materials produced. Compounds >1 - 3 were found to form zincite, zinc metal, or mixed zincite/wurtzite phases from solution precipitation or solvothermal routes; however, no routes yielded the mixed anion (i.e., ZnOxSy) materials.
机译:一系列含巯基的试剂[3-巯基丙酸(H2-3MPA),4-巯基苯酚(H2-4MP),2-巯基吡啶-N-氧化物(H-2MPO)]与二乙基锌(ZnEt2)在己烷/吡啶(py)生成{(μ4-3MPA)[Zn(Et)(py)] 4}∞(> 1 ),[(py)2(Et)Zn(μ3-4MP )Zn(Et)(py)] 2(> 2 )和(2MPO)Zn(Et)py(> 3 )。对于聚合物> 1 ,3MPA的每个功能位点均与四个四面体(Td)配位的Zn(Et)(py)亚基结合。 3MPA的硫桥接两个“ Zn(Et)(py)”亚基,它们也被另一个3MPA的两个羧酸氧桥接,以扩散该链。相反,> 2 形成离散的四核物种,该物种由两个Zn(Et)(py)部分和两个4MP配体的氧桥接而成,每个硫醇盐位点均以Zn(Et)(py)终止2个部分。化合物> 3 采用的单体类型是2MPO螯合,末端Et和结合的py,以填充Zn金属中心的Td配位。然后使用化合物> 1-3-通过溶液沉淀和溶剂热途径生成纳米颗粒,以确定这些前体对最终材料的形态和组成的影响。发现化合物> 1-3 由溶液沉淀或溶剂热途径形成锌酸盐,锌金属或混合的锌酸盐/纤锌矿相。但是,没有途径产生混合阴离子(即ZnOxSy)材料。

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