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基于钴酞菁:C60富勒烯:氧化锌混合纳米复合材料的激光蒸发制备薄膜

Thin Films Based on Cobalt Phthalocyanine:C60 Fullerene:ZnO Hybrid Nanocomposite Obtained by Laser Evaporation.

作者信息

Socol Marcela, Preda Nicoleta, Costas Andreea, Borca Bogdana, Popescu-Pelin Gianina, Mihailescu Andreea, Socol Gabriel, Stanculescu Anca

机构信息

National Institute of Materials Physics, 077125 Magurele, Romania.

National Institute for Lasers, Plasma and Radiation Physics, 077125 Magurele, Romania.

出版信息

Nanomaterials (Basel). 2020 Mar 5;10(3):468. doi: 10.3390/nano10030468.

Abstract

Matrix-assisted pulsed laser evaporation (MAPLE) was used to deposit hybrid nanocomposite thin films based on cobalt phthalocyanine (CoPc), C60 fullerene and ZnO nanoparticles. The inorganic nanoparticles, with a size of about 20 nm, having the structural and optical properties characteristic of ZnO, were chemically synthesized by a simple precipitation method. Furthermore, ZnO nanoparticles were dispersed in a dimethyl sulfoxide solution in which CoPc and C60 had been dissolved, ready for the freezing MAPLE target. The effect of the concentration of ZnO nanoparticles on the structural, morphological, optical and electrical properties of the CoPc:C60:ZnO hybrid nanocomposite layers deposited by MAPLE was evaluated. The infrared spectra of the hybrid nanocomposite films confirm that the CoPc and C60 preserve their chemical structure during the laser deposition process. The CoPc optical signature is recognized in the ultraviolet-visible (UV-Vis) spectra of the obtained layers, these being dominated by the absorption bands associated to this organic compound while the ZnO optical fingerprint is identified in the photoluminescence spectra of the prepared layers, these disclosing the emission bands linked to this inorganic semiconductor. The hybrid nanocomposite layers exhibit globular morphology, which is typical for the thin films deposited by MAPLE. Current-voltage (J-V) characteristics of the structures developed on CoPc:C60:ZnO layers reveal that the addition of an appropriate amount of ZnO nanoparticles in the CoPc:C60 mixture leads to a more efficient charge transfer between the organic and inorganic components. Due to their photovoltaic effect, structures featuring such hybrid nanocomposite thin films deposited by MAPLE can have potential applications in the field of photovoltaic devices.

摘要

采用基质辅助脉冲激光蒸发法(MAPLE)沉积基于钴酞菁(CoPc)、C60富勒烯和氧化锌纳米颗粒的混合纳米复合薄膜。通过简单沉淀法化学合成了尺寸约为20nm、具有氧化锌结构和光学特性的无机纳米颗粒。此外,将氧化锌纳米颗粒分散在已溶解CoPc和C60的二甲基亚砜溶液中,制备用于冷冻的MAPLE靶材。评估了氧化锌纳米颗粒浓度对通过MAPLE沉积的CoPc:C60:ZnO混合纳米复合层的结构、形态、光学和电学性能的影响。混合纳米复合薄膜的红外光谱证实,CoPc和C60在激光沉积过程中保持其化学结构。在所获得的层的紫外可见(UV-Vis)光谱中识别出CoPc的光学特征,这些光谱主要由与该有机化合物相关的吸收带主导,而在制备层的光致发光光谱中识别出氧化锌的光学指纹,这些光谱揭示了与该无机半导体相关的发射带。混合纳米复合层呈现出球状形态,这是MAPLE沉积薄膜的典型特征。在CoPc:C60:ZnO层上制备的结构的电流-电压(J-V)特性表明,在CoPc:C60混合物中添加适量的氧化锌纳米颗粒可导致有机和无机成分之间更有效的电荷转移。由于其光伏效应,采用MAPLE沉积此类混合纳米复合薄膜的结构在光伏器件领域具有潜在应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6568/7153592/7435d8a6e769/nanomaterials-10-00468-sch001.jpg

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