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Composition-spread Thin Films Of Pentacene And 6,13-pentacenequinone Fabricated By Using Continuous-wave Laser Molecular Beam Epitaxy

机译:连续波激光分子束外延制备并五苯和6,13-​​并五苯醌的成分扩散薄膜

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Synthesis of continuous composition-spread (CCS) thin films is widely recognized in combinatorial material science as a powerful technique for rapidly investigating the properties of new functional materials. However, there are very few reports of CCS organic thin films due to the fact that the thermal evaporation method with Knudsen cells, which is commonly used to fabricate organic thin films in vacuum, does not offer the necessary level of deposition rate control as, for example, does pulsed laser deposition (PLD). We have successfully fabricated organic CCS thin films of pentacene and 6,13-pentacenequinone by continuous-wave laser molecular beam epitaxy (CWL-MBE), which we developed as a new fabrication method for organic thin films. The composition-spread films were characterized systematically by ultraviolet-visible spectroscopy, Fourier transform infrared spectroscopy, X-ray diffraction, atomic force microscopy, and two-probe conductivity measurements. The present work brings the advantages of high-throughput parallel synthesis and systematic characterization to the field of organic electronics, allowing for quick exploration and rapid optimization of organic functional materials and devices.
机译:连续成分扩展(CCS)薄膜的合成在组合材料科学中被广泛认为是一种用于快速研究新型功能材料性能的强大技术。但是,由于使用Knudsen电池的热蒸发法(通常用于真空制造有机薄膜)不能提供必要的沉积速率控制水平,因此关于CCS有机薄膜的报道很少。例如,进行脉冲激光沉积(PLD)。我们已经通过连续波激光分子束外延(CWL-MBE)成功地制备了并五苯和6,13-​​并五苯醌的有机CCS薄膜,并将其开发为一种新的有机薄膜制备方法。通过紫外线-可见光谱,傅立叶变换红外光谱,X射线衍射,原子力显微镜和双探针电导率测量系统地表征了成分扩散膜。本工作为有机电子领域带来了高通量并行合成和系统表征的优势,从而可以快速探索和快速优化有机功能材料和器件。

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