Rasoga Oana, Breazu Carmen, Socol Marcela, Solonaru Ana-Maria, Vacareanu Loredana, Petre Gabriela, Preda Nicoleta, Stanculescu Florin, Socol Gabriel, Girtan Mihaela, Stanculescu Anca
Laboratory of Optical Processes in Nanostructured Materials, National Institute of Materials Physics, 405A Atomistilor Street, P.O. Box MG-7, 077125 Magurele, Romania.
Electroactive Polymers and Plasmochemistry, Petru Poni Institute of Macromolecular Chemistry, 41A Gr. Ghica Voda Alley, 700487 Iasi, Romania.
Nanomaterials (Basel). 2022 Nov 28;12(23):4230. doi: 10.3390/nano12234230.
The properties of organic heterostructures with mixed layers made of arylenevinylene-based polymer donor and non-fullerene perylene diimide acceptor, deposited using Matrix Assisted Pulsed Laser Evaporation on flat Al and nano-patterned Al electrodes, were investigated. The Al layer electrode deposited on the 2D array of cylindrical nanostructures with a periodicity of 1.1 µm, developed in a polymeric layer using UV-Nanoimprint Lithography, is characterized by an inflorescence-like morphology. The effect of the nanostructuring on the optical and electrical properties was studied by comparison with those of the heterostructures based on a mixed layer with fullerene derivative acceptor. The low roughness of the mixed layer deposited on flat Al was associated with high reflectance. The nano-patterning, which was preserved in the mixed layer, determining the light trapping by multiple scattering, correlated with the high roughness and led to lower reflectance. A decrease was also revealed in photoluminescence emission both at UV and Vis excitation of the mixed layer, with the non-fullerene acceptor deposited on nano-patterned Al. An injector contact behavior was highlighted for all Al/mixed layer/ITO heterostructures by I-V characteristics in dark. The current increased, independently of acceptor (fullerene or non-fullerene), in the heterostructures with nano-patterned Al electrodes for shorter conjugation length polymer donors.
研究了采用矩阵辅助脉冲激光蒸发法在平面铝电极和纳米图案化铝电极上沉积的、由亚芳基乙烯基聚合物给体和非富勒烯苝二酰亚胺受体组成的混合层有机异质结构的性质。沉积在二维圆柱形纳米结构阵列上的铝层电极具有花序状形态,该阵列在聚合物层中利用紫外纳米压印光刻技术制备,周期为1.1 µm。通过与基于富勒烯衍生物受体混合层的异质结构进行比较,研究了纳米结构对光学和电学性质的影响。沉积在平面铝上的混合层粗糙度低,这与高反射率相关。保留在混合层中的纳米图案化决定了通过多次散射实现的光捕获,与高粗糙度相关,并导致较低的反射率。在紫外和可见光激发下,沉积在纳米图案化铝上的含有非富勒烯受体的混合层的光致发光发射也有所降低。通过暗态下的电流-电压特性突出了所有铝/混合层/氧化铟锡异质结构的注入器接触行为。对于共轭长度较短的聚合物给体,在具有纳米图案化铝电极的异质结构中,电流增加,与受体(富勒烯或非富勒烯)无关。