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首页> 外文期刊>Chemistry of Materials: A Publication of the American Chemistry Society >Solution-Processable Ultrathin Size- and Shape-Controlled Colloidal Cu2-xS Nanosheets
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Solution-Processable Ultrathin Size- and Shape-Controlled Colloidal Cu2-xS Nanosheets

机译:溶液可加工的超薄尺寸和形状控制的胶体Cu2-xS纳米片

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摘要

Ultrathin two-dimensional (2D) nanosheets (NSs) possess extraordinary properties that are attractive for both fundamental studies and technological devices. Solution-based bottom-up methods are emerging as promising routes to produce free-standing NSs, but the synthesis of colloidal NSs with well-defined size and shape has remained a major challenge. In this work, we report a novel method that yields 2 nm thick colloidal Cu2-xS NSs with well-defined shape (triangular or hexagonal) and size (100 nm to 3 mu m). The key feature of our approach is the use of a synergistic interaction between halides (Br or Cl) and copper-thiolate metal-organic frameworks to create a template that imposes 2D constraints on the Cu-catalyzed C-S thermolysis, resulting in nucleation and growth of colloidal 2D Cu2-xS NSs. Moreover, the NS composition can be postsynthetically tailored by exploiting topotactic cation exchange reactions. This is illustrated by converting the Cu2-xS NSs into ZnS and CdS NSs while preserving their size and shape. The method presented here thus holds great promise as a route to solution-processable compositionally diverse ultrathin colloidal NSs with well-defined shape and size.
机译:超薄二维(2D)纳米片(NSs)具有非凡的特性,对基础研究和技术设备均具有吸引力。基于溶液的自下而上的方法正成为生产独立的NS的有前途的途径,但是具有确定的大小和形状的胶体NS的合成仍然是主要的挑战。在这项工作中,我们报告了一种新颖的方法,可产生2 nm厚的胶体状Cu2-xS NSs,具有明确定义的形状(三角形或六边形)和尺寸(100 nm至3μm)。我们方法的关键特征是利用卤化物(Br或Cl)和硫代铜金属有机框架之间的协同相互作用来创建模板,该模板对Cu催化的CS热解施加2D约束,导致核的成核和生长胶体二维Cu2-xS NSs。此外,可以通过利用阳离子阳离子交换反应在合成后调整NS的组成。通过将Cu2-xS NSs转换为ZnS和CdS NSs,同时保留其尺寸和形状可以说明这一点。因此,这里提出的方法具有广阔的前景,有望成为具有可定义形状和尺寸的溶液可加工组成多样化的超薄胶体NS的途径。

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