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Self-assembly of CdTe tetrapods into network monolayers at the air/water interface

机译:CdTe四脚架在空气/水界面处自组装成网络单层

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摘要

Cadmium telluride (CdTe) tetrapods are synthesized with varying aspect ratios through multiple injections of the Te precursor, which provides an excellent means of controlling and tailoring the optical properties of the tetrapods. The self-assembly of CdTe tetrapods at the air/water interface is explored using the Langmuir-Blodgett (LB) technique due to potential use in solar cells arising from the intriguing tetrapod shape that improves charge transport and the optimum band gap energy of CdTe that enhances light absorption. Interestingly, the Langmuir isotherm shows two pressure plateau regions: one at ~10 mN/m with the other at the high surface pressure of ~39 mN/m. LB deposition at various pressures allows the discernment of the unique two-dimensional packing alluded in the isotherm. By placing CdTe at the air/water interface, it is revealed in the deposition that the tetrapods experienced a dewetting phenomenon, forming a ribbon structure at the onset of surface pressure with a height corresponding to the length of one tetrapod arm. With the increase of surface pressure, the ribbons widen to an eventual large-scale percolated network pattern. The packing density of tetrapods is successfully manipulated by controlling the surface pressure, which may find promising applications in optoelectronic devices.
机译:碲化镉(CdTe)四足动物是通过多次注入Te前驱体以不同的纵横比合成的,这提供了控制和调整四足动物光学特性的极佳方法。使用Langmuir-Blodgett(LB)技术探索了CdTe四脚架在空气/水界面处的自组装,这是由于诱人的四脚架形状可改善电荷传输和CdTe的最佳带隙能而在太阳能电池中的潜在用途。增强光吸收。有趣的是,Langmuir等温线显示了两个压力高原区域:一个处于〜10 mN / m,另一个处于〜39 mN / m的高表面压力。 LB在各种压力下的沉积都可以识别等温线中暗指的独特二维堆积。通过在空气/水界面处放置CdTe,在沉积中发现四足动物经历了去湿现象,在表面压力开始时形成了带状结构,其高度与一个四足动物手臂的长度相对应。随着表面压力的增加,色带变宽,最终形成大规模的渗透网络图案。通过控制表面压力可以成功地控制四脚架的堆积密度,这可能会在光电器件中找到有前途的应用。

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