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用于电子应用的具有基于树枝状聚合物混合层的有机异质结构。

Organic Heterostructures with Dendrimer Based Mixed Layer for Electronic Applications.

作者信息

Rasoga Oana, Yonkeu Anne Lutgarde Djoumessi, Breazu Carmen, Socol Marcela, Preda Nicoleta, Stanculescu Florin, Stanculescu Anca, Iwuoha Emmanuel

机构信息

National Institute of Materials Physics, 405A Atomistilor Street, P.O. Box MG-7, 077125 Magurele, Romania.

SensoLab, Department of Chemistry, University of Western Cape, Robert Sobukwe Road, Bellville, Cape Town 7535, South Africa.

出版信息

Molecules. 2024 Sep 1;29(17):4155. doi: 10.3390/molecules29174155.

Abstract

Recently, much research has focused on the search for new mixed donor-acceptor layers for applications in organic electronics. Organic heterostructures with layers based on the generation 1 poly(propylene thiophenoimine) (G1PPT) dendrimer, N,N'-diisopropylnaphthalene diimide (MNDI), and a combination of the two were prepared and their electrical properties were investigated. Single layers of G1PPT and MNDI and a mixed layer (G1PPT:MNDI) were obtained via spin coating on quartz glass, silicon, and glass/ITO substrates, using chloroform as a solvent. The absorption mechanism was investigated, the degree of disorder was estimated, and the emission properties of the layers were highlighted using spectroscopic methods (UV-Vis transmission and photoluminescence). The effects of the concentration and surface topographical particularities on the properties of the layers were analyzed via atomic force microscopy. All of the heterostructures realized with ITO and Au electrodes showed good conduction, with currents of the order of mA. Additionally, the heterostructure with a mixed layer exhibited asymmetry in the current-voltage curve between forward and reverse polarization in the lower range of the applied voltages, which was more significant at increased concentrations and could be correlated with rectifier diode behavior. Consequently, the mixed-layer generation 1 poly(propylene thiophenoimine) dendrimer with N,N'-diisopropylnaphthalene diimide can be considered promising for electronic applications.

摘要

最近,许多研究都集中在寻找用于有机电子应用的新型混合供体-受体层。制备了基于第一代聚(丙撑硫代苯亚胺)(G1PPT)树枝状大分子、N,N'-二异丙基萘二酰亚胺(MNDI)以及两者组合的具有层状结构的有机异质结,并对其电学性质进行了研究。通过旋涂法,以氯仿为溶剂,在石英玻璃、硅和玻璃/ITO衬底上获得了G1PPT和MNDI的单层以及混合层(G1PPT:MNDI)。研究了吸收机制,估计了无序程度,并使用光谱方法(紫外-可见透射和光致发光)突出了各层的发射特性。通过原子力显微镜分析了浓度和表面形貌特性对各层性质的影响。所有用ITO和Au电极实现的异质结都表现出良好的导电性,电流在毫安量级。此外,具有混合层的异质结在较低施加电压范围内的正向和反向极化之间的电流-电压曲线中表现出不对称性,在浓度增加时这种不对称性更明显,并且可能与整流二极管行为相关。因此,含有N,N'-二异丙基萘二酰亚胺的第一代聚(丙撑硫代苯亚胺)树枝状大分子混合层可被认为在电子应用方面具有前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/af74/11396800/93f362c2ee9d/molecules-29-04155-g001.jpg

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