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通过化学浴沉积法对在功能化自组装单分子层上生长的硫化铅进行形态控制。

Morphological control of PbS grown on functionalized self-assembled monolayers by chemical bath deposition.

作者信息

Yang Jing, Walker Amy V

机构信息

Department of Materials Science and Engineering, University of Texas at Dallas , 800 W. Campbell Road, RL 10, Richardson, Texas 75080, United States.

出版信息

Langmuir. 2014 Jun 17;30(23):6954-62. doi: 10.1021/la500784y. Epub 2014 Jun 4.

DOI:10.1021/la500784y
PMID:24854067
Abstract

We have investigated the chemical bath deposition (CBD) of PbS on functionalized alkanethiolate self-assembled monolayers (SAMs) using time-of-flight secondary ion mass spectrometry (SIMS), X-ray photoelectron spectroscopy (XPS), and scanning electron microscopy. The deposition mechanism involves both cluster-by-cluster and ion-by-ion growth. The dominant reaction pathway and the chemical composition and morphology of the deposited layer are dependent on both the SAM terminal group and the experimental conditions. On -COOH-terminated SAMs, three types of crystallites are observed: nanocrystals formed by heterogeneous ion-by-ion growth, larger needle-like particles, and ~2 μm particles deposited by homogeneous cluster-by-cluster deposition. The nanocrystals nucleate at Pb(2+)-carboxylate surface complexes, and so strongly adhere to the substrate. On -OH- and -CH3-terminated SAMs, only the micrometer-sized particles are formed by a cluster-by-cluster deposition mechanism. These particles do not adhere strongly to the SAM surface and can be easily removed. SIMS and XPS analyses indicate that the larger needle-like crystals and micrometer-sized particles are composed of oxidized lead sulfide and lead oxides, while the nanocrystals are composed of ≥85% PbS. Using sonication-assisted CBD, we demonstrate that PbS is deposited by ion-by-ion growth alone on -COOH-terminated SAMs. The deposited film is more compact with a smaller grain size and is >90% PbS.

摘要

我们使用飞行时间二次离子质谱(SIMS)、X射线光电子能谱(XPS)和扫描电子显微镜,研究了硫化铅在功能化链烷硫醇自组装单分子层(SAMs)上的化学浴沉积(CBD)。沉积机制涉及逐个簇和逐个离子的生长。主要反应途径以及沉积层的化学成分和形态取决于SAM端基和实验条件。在以 -COOH 为端基的 SAMs 上,观察到三种类型的微晶:通过异质逐个离子生长形成的纳米晶体、较大的针状颗粒以及通过均匀逐个簇沉积沉积的约2μm颗粒。纳米晶体在 Pb(2 +)-羧酸盐表面络合物处成核,因此强烈粘附在基底上。在以 -OH 和 -CH3 为端基的 SAMs 上,仅通过逐个簇沉积机制形成微米级颗粒。这些颗粒不会强烈粘附在 SAM 表面,并且很容易被去除。SIMS 和 XPS 分析表明,较大的针状晶体和微米级颗粒由氧化硫化铅和氧化铅组成,而纳米晶体由≥85%的 PbS 组成。使用超声辅助 CBD,我们证明 PbS 仅通过逐个离子生长沉积在以 -COOH 为端基的 SAMs 上。沉积的薄膜更致密,晶粒尺寸更小,且 PbS 含量>90%。

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