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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Directing Hybrid Structures by Combining Self-Assembly of Functional Block Copolymers and Atomic Layer Deposition: A Demonstration on Hybrid Photovoltaics
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Directing Hybrid Structures by Combining Self-Assembly of Functional Block Copolymers and Atomic Layer Deposition: A Demonstration on Hybrid Photovoltaics

机译:通过功能嵌段共聚物的自组装和原子层沉积相结合来指导混合结构:混合光伏的演示

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The simplicity and versatility of block copolymer self-assembly offers their use as templates for nano- and meso-structured materials. However, in most cases, the material processing requires multiple steps, and the block copolymer is a sacrificial building block. Here, we combine a self-assembled block copolymer template and atomic layer deposition (ALD) of a metal oxide to generate functional hybrid films in a simple process with no etching or burning steps. This approach is demonstrated by using the crystallization-induced self-assembly of a rod-coil block copolymer, P3HT-b-PEO, and the ALD of ZnO. The block copolymer self-assembles into fibrils, similar to 20 nm in diameter and microns long, with crystalline P3HT cores and amorphous PEO corona. The affinity of the ALD precursors to the PEO corona directs the exclusive deposition of crystalline ZnO within the PEO domains. The obtained hybrid structure possesses the properties desired for photovoltaic films: donor-acceptor continuous nanoscale interpenetrated networks. Therefore, we integrated the films into single-layer hybrid photovoltaics devices, thus demonstrating that combining self-assembly of functional block copolymers and ALD is a simple approach to direct desired complex hybrid morphologies.
机译:嵌段共聚物自组装的简单性和多功能性使其可以用作纳米和中观结构材料的模板。但是,在大多数情况下,材料加工需要多个步骤,并且嵌段共聚物是一种牺牲性的结构单元。在这里,我们将自组装的嵌段共聚物模板与金属氧化物的原子层沉积(ALD)结合在一起,以简单的过程生成功能性杂化膜,而无需蚀刻或燃烧步骤。该方法通过使用棒-嵌段共聚物P3HT-b-PEO和ZnO的ALD的结晶诱导自组装来证明。嵌段共聚物自组装成原纤维,直径约20 nm,长微米,具有结晶P3HT核和无定形PEO电晕。 ALD前体对PEO电晕的亲和力指导了结晶ZnO在PEO域内的排他性沉积。所获得的杂化结构具有光伏膜所需的性能:供体-受体连续的纳米尺度互穿网络。因此,我们将薄膜集成到单层混合光伏器件中,从而证明了将功能嵌段共聚物的自组装与ALD结合起来是一种简单的方法,可用于指导所需的复杂混合形态。

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