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Controllable fabrication of copper phthalocyanine nanostructure crystals

机译:铜酞菁纳米结构晶体的可控制备

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摘要

Copper phthalocyanine (CuPc) nanostructure crystals, including nanoflower, nanoribbon, and nanowire, were controllably fabricated by temperature gradient physical vapor deposition (TGPVD) through controlling the growth parameters. In a controllable growth system with carrier gas N-2, nanoflower, nanoribbon, and nanowire crystals were formed in a high-temperature zone, medium-temperature zone, and low-temperature zone, respectively. They were proved to be beta-phase, coexist of alpha-phase and beta-phase, and alpha-phase respectively based on x-ray diffraction results. Furthermore, ultralong CuPc nanowires up to several millimeters could be fabricated by TG-PVD without carrier gas, and they were well-aligned to form large-area CuPc nanowire crystal arrays by the Langmuir-Blodgett method. The nanostructure crystals showed unusual optical absorption spectra from the ultraviolet-visible to near-infrared range, which was explained by the diffraction and scattering caused by the wavelength-sized nanostructures. These CuPc nanostructure crystals show potential applications in organic electronic and optoelectronic devices.
机译:通过控制生长参数,通过温度梯度物理气相沉积(TGPVD)可控地制备了酞菁铜(CuPc)纳米结构晶体,包括纳米花,纳米带和纳米线。在带有载气N-2的可控生长系统中,分别在高温区,中温区和低温区形成了纳米花,纳米带和纳米线晶体。根据X射线衍射结果证明它们分别是β相,α相和β相以及α相共存。此外,无需载气,可以通过TG-PVD制备高达几毫米的超长CuPc纳米线,并通过Langmuir-Blodgett方法将它们很好地对准以形成大面积的CuPc纳米线晶体阵列。纳米结构晶体显示了从紫外可见到近红外范围的异常光学吸收光谱,这可以解释为由波长大小的纳米结构引起的衍射和散射。这些CuPc纳米结构晶体显示出在有机电子和光电设备中的潜在应用。

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