Park Minkyeong, Kang Seulki, Nam Chongyong, Narasimha Karnati, Lee Won Bo, Park So-Jung
Department of Chemistry and Nanoscience, Ewha Womans University, 52 Ewhayeodae-gil, Seodaemun-gu, Seoul 03760, Republic of Korea.
School of Chemical and Biological Engineering, Institute of Chemical Processes, Seoul National University, 1 Gwanak-ro, Gwanak-gu, Seoul 08826, Republic of Korea.
ACS Appl Mater Interfaces. 2022 Feb 16;14(6):8266-8273. doi: 10.1021/acsami.1c22535. Epub 2022 Feb 7.
Here, we report the magnetic field-induced self-assembly of a conjugated block copolymer, poly(3-hexylthiopene)--poly(ethylene glycol) (P3HT--PEG), and iron oxide nanoparticles (IONPs) at the air-water interface. Binary self-assembly of P3HT--PEG and IONPs at the interface results in nanoparticle-embedded P3HT--PEG nanowire arrays with a micrometer-scale domain size. Under the magnetic field, the field-induced magnetic interaction significantly improves the degree of order, generating long-range ordered, direction-controlled nanoarrays of P3HT--PEG and IONPs, where IONPs are aligned in the direction of the magnetic field over a sub-millimeter scale. The size of IONPs is an important factor for the formation of an ordered assembly structure at the nanometer scale, as it dictates the magnetic dipole interaction and the entropic interaction between nanoparticles and polymers. The consideration of magnetic dipole interactions suggests that the field-induced self-assembly occurs through the formation of intermediate magnetic subunits composed of short IONP strings along the semirigid P3HT nanowires, which can be aligned through the magnetic interactions, ultimately driving the long-range ordered self-assembly. This study demonstrates for the first time that the magnetic field-induced self-assembly can be used to generate macroscopically ordered polymer films with a nanometer-scale order in low fields.
在此,我们报道了共轭嵌段共聚物聚(3-己基噻吩)-聚(乙二醇)(P3HT-PEG)与氧化铁纳米颗粒(IONPs)在空气-水界面的磁场诱导自组装。P3HT-PEG和IONPs在界面处的二元自组装产生了具有微米级畴尺寸的嵌入纳米颗粒的P3HT-PEG纳米线阵列。在磁场作用下,磁场诱导的磁相互作用显著提高了有序度,生成了长程有序、方向可控的P3HT-PEG和IONPs纳米阵列,其中IONPs在亚毫米尺度上沿磁场方向排列。IONPs的尺寸是在纳米尺度上形成有序组装结构的一个重要因素,因为它决定了纳米颗粒与聚合物之间的磁偶极相互作用和熵相互作用。对磁偶极相互作用的考虑表明,磁场诱导的自组装是通过沿半刚性P3HT纳米线形成由短IONP串组成的中间磁性亚基而发生的,这些亚基可以通过磁相互作用排列,最终驱动长程有序自组装。这项研究首次证明,磁场诱导的自组装可用于在低场中生成具有纳米级有序的宏观有序聚合物薄膜。