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硫代氨基甲酸盐锌和镉配合物:用于硫化锌气溶胶辅助化学气相沉积的单源前驱体的合理设计

Zinc and cadmium thioamidate complexes: rational design of single-source precursors for the AACVD of ZnS.

作者信息

Robson Max E, Johnson Andrew L

机构信息

Department of Chemistry, University of Bath, Claverton Down, Bath, BA2 7AY, UK.

Centre of Doctoral Training in Aerosol Science, University of Bristol, School of Chemistry, Cantock's Close, BS8 1TS, UK.

出版信息

Dalton Trans. 2024 Jul 9;53(27):11380-11392. doi: 10.1039/d4dt01278j.

Abstract

A series of zinc(II) thioamidate complexes [Zn{SC(Pr)NR}] for R = Pr ( = 2) (2), Bu (3) ( = 1), Ph (4) ( = 2) and Cy (5) ( = 2) and one cadmium(II) thioamidate complex [Cd{SC(Pr)NBu}], (6), were designed and synthesised as single-source precursors for AACVD ZnS and CdS. Solid-state structures of all four zinc(II) compounds revealed distorted tetrahedral or trigonal bipyramidal geometries, with varying tendencies for dimeric association, mediated by {Zn-S} bridging bonds. The thermogravimetric analysis identified the {Bu} derivertive, 3, as the most promising precursor based on its low decomposition onset (118 °C) and clean conversion to ZnS. This was attributed to the greater availability of β-hydrogen atoms promoting the pyrolysis mechanism. The corresponding cadmium thioamide 6 was found to crystallise as a trimetallic molecule which lacked the thermal stability to be considered viable for AACVD. Hence, 3 was used to deposit ZnS thin films by AACVD at 200-300 °C. Powder X-ray diffraction confirmed phase-pure growth of hexagonal wurtzite ZnS, with approximate crystallite sizes of 15-20 nm. Scanning electron microscopy revealed densely packed spherical nanoclusters. The morphology and crystallinity were most consistent for depositions between 250-300 °C. Energy dispersive X-ray spectroscopy indicated slightly sulfur-deficient stoichiometries.

摘要

设计并合成了一系列硫代氨基锌(II)配合物[Zn{SC(Pr)NR}],其中R = Pr(= 2)(2)、Bu(3)(= 1)、Ph(4)(= 2)和Cy(5)(= 2),以及一种硫代氨基镉(II)配合物[Cd{SC(Pr)NBu}](6),作为用于原子层化学气相沉积(AACVD)制备硫化锌(ZnS)和硫化镉(CdS)的单源前驱体。所有四种锌(II)化合物的固态结构均显示出扭曲的四面体或三角双锥几何构型,通过{Zn-S}桥键介导,具有不同程度的二聚缔合倾向。热重分析表明,基于其较低的分解起始温度(118°C)和向ZnS的完全转化,{Bu}衍生物3是最有前景的前驱体。这归因于β-氢原子的可用性更高,促进了热解机制。发现相应的镉硫酰胺6结晶为三金属分子,其热稳定性不足以用于AACVD。因此,在200 - 300°C下通过AACVD使用3沉积ZnS薄膜。粉末X射线衍射证实了六方纤锌矿ZnS的纯相生长,微晶尺寸约为15 - 20 nm。扫描电子显微镜显示出紧密堆积的球形纳米团簇。在250 - 300°C之间沉积时,形态和结晶度最为一致。能量色散X射线光谱表明化学计量比略缺硫。

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