Photoinduced double hydrogen-atom transfer for polymerization and 3D printing of conductive polymer

0 CHEMISTRY, MULTIDISCIPLINARY Nature synthesis Pub Date : 2024-06-21 DOI:10.1038/s44160-024-00582-w
Xin Zhou, Shangwen Fang, Yangnan Hu, Xin Du, Haibo Ding, Renjie Chai, Jie Han, Jin Xie, Zhongze Gu
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Abstract

The photoinduced polymerization of electron-rich heteroaromatic pentacycles (ERHPs), such as thiophene derivatives and pyrrole derivatives, is challenging owing to the inherent stability of their aromatic structure. The resultant polymers are organic semiconductor materials that are widely used in both organic electronic and bioelectronic devices. Here we report an efficient hydrogen-atom transfer (HAT) photocatalyst, which is the dimerization product (1,2-bis(4-(2-hydroxyethoxy)phenyl)ethane-1,2-dione) of an acyl radical generated by the photolysis of Irgacure 2959, and its use for the dehydrogenation of coupled ERHPs formed in an acidic environment. The dehydrogenation occurs via a double HAT process, enabling the photopolymerization of ERHPs. This reaction also allows us to fabricate three-dimensional (3D) conductive pathways in hydrogels. The hydrogel can be printed to form free-standing 3D conductive structures of poly(3,4-ethylenedioxythiophene):polystyrene sulfonate with a precision of 220 nm, markedly surpassing structures built using previous methods (>10 µm). The approach introduces opportunities for precision engineering of 3D electrodes with the possibility of expanding applications in organic electronics and bioelectronics. A photopolymerization strategy for electron-rich heteroaromatic pentacycles, suitable for two-photon printing, is reported. A dimerized product of an acyl radical, formed by photolysis of Irgacure 2959, catalyses the dehydrogenation of coupled heteroaromatic pentacycles synthesized in acidic conditions via double hydrogen-atom transfer to produce conductive polymers.

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光诱导双氢原子转移用于导电聚合物的聚合和三维打印
由于噻吩衍生物和吡咯衍生物等富电子杂芳香族五元环(ERHPs)的芳香结构具有固有的稳定性,因此光诱导聚合具有挑战性。由此产生的聚合物是有机半导体材料,被广泛应用于有机电子和生物电子设备中。在此,我们报告了一种高效的氢原子转移(HAT)光催化剂,它是 Irgacure 2959 光解产生的酰基的二聚产物(1,2-双(4-(2-羟乙氧基)苯基)乙烷-1,2-二酮),并可用于在酸性环境中形成的偶联 ERHP 的脱氢反应。脱氢是通过双 HAT 过程进行的,从而实现了 ERHP 的光聚合。这种反应还能让我们在水凝胶中制造出三维(3D)导电通道。这种水凝胶可以打印成独立的聚(3,4-亚乙二氧基噻吩):聚苯乙烯磺酸盐三维导电结构,精度高达 220 nm,明显超过了以前使用的方法(10 µm)。这种方法为三维电极的精密工程提供了机会,有可能扩大在有机电子学和生物电子学中的应用。
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