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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Structural and Electric-Optical Properties of Zinc Phthalocyanine Evaporated Thin Films: Temperature and Thickness Effects
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Structural and Electric-Optical Properties of Zinc Phthalocyanine Evaporated Thin Films: Temperature and Thickness Effects

机译:酞菁锌蒸发薄膜的结构和光电性质:温度和厚度的影响

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It is known that the molecular architecture plays a fundamental role in the electrical and optical properties of materials processed in the form of thin films. Here, zinc phthalocyanine (ZnPc) thin films were fabricated through the vacuum thermal evaporation technique (PVD, physical vapor deposition) up to 50 nm thickness with the objective of determining their molecular architecture and some electrical and optical properties. Structurally, the results showed a uniform growth of the films depending on how the evaporation is performed (step-by-step or straightforward). The uniform films present a molecular organization dominated by the ZnPc macrocycle ring forming almost 90° in relation to the substrate surface. These films are crystalline (a-form) and possess molecular aggregates in the form of dimers (or higher order of aggregates) and monomers. Such aggregates are seen at the nanometer scale; however, at the micrometer scale, the films are morphologically homogeneous. In relation to the optical properties, it was observed that these films, besides absorbing in the ultraviolet-visible region, present a photoluminescence when irradiated with the 785 nm laser line. In terms of electrical properties, it was determined an electrical conductivity of ca. 10~(-10) S/m and a significant photoconducting activity. Finally, a dependence of the molecular organization, crystallinity, and optical properties on the film annealing (and thickness) was investigated, and the sensitivity of the ZnPc PVD films against gasoline vapor was tested as proof-of-principle.
机译:已知分子结构在以薄膜形式加工的材料的电和光学性质中起着基本作用。在这里,锌酞菁(ZnPc)薄膜是通过真空热蒸发技术(PVD,物理气相沉积)制备的,厚度高达50 nm,目的是确定其分子结构以及一些电学和光学性质。在结构上,结果表明薄膜的均匀生长取决于蒸发的进行方式(逐步或直接)。均匀的膜呈现出由ZnPc大环形成的分子结构,该结构相对于基底表面几乎形成90°。这些薄膜是晶体(α形),并具有二聚体(或更高阶数的聚集体)和单体形式的分子聚集体。这种聚集体是在纳米级观察到的。然而,在微米级,膜在形态上是均匀的。关于光学性质,观察到这些膜除了在紫外可见区域吸收外,当用785nm激光线照射时呈现光致发光。就电性能而言,确定的电导率为约3。 10〜(-10)S / m,具有显着的光电导活性。最后,研究了分子组织,结晶度和光学性质对薄膜退火(和厚度)的依赖性,并以ZnPc PVD薄膜对汽油蒸气的敏感性作为原理进行了测试。

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