Key Laboratory of Synthetic and Natural Functional Molecule Chemistry of the Ministry of Education, College of Chemistry and Materials Science, Northwest University, Xi'an 710069, China.
ACS Macro Lett. 2023 Apr 18;12(4):433-439. doi: 10.1021/acsmacrolett.2c00759. Epub 2023 Mar 17.
Conductive hydrogels are promising material candidates in fields ranging from flexible sensors and electronic skin applications to personalized medical monitoring. However, developing intrinsically conductive polymer hydrogels (ICPHs) with high mechanical properties and excellent printability is still challenging. Here, we introduce a simultaneous polymerization acceleration and mechanical enhancement (SPAME) strategy to construct PEDOT-based ICPHs via the rational design of coordinative and orthogonal ruthenium photochemistry (CORP). This orthogonal photochemistry triggers the oxidative polymerization of EDOT and the coupling of phenols within seconds under blue light irradiation. Benefiting from the bifunctional EDTA-Fe design, the photoreleased Fe(III) accelerated the EDOT polymerization and shortened the preparation time of ICPHs to a few seconds. At the same time, the addition of EDTA-Fe enhanced their mechanical properties, and both the critical strains and maximum stresses of the hydrogel doubled. Furthermore, the introduction of phenol residues in PAA-Ph significantly shortened the gelation time from several minutes to about 7 s. Thus, this fast and controllable CORP chemistry is compatible with standard printing techniques for engineering hydrogels for complex multifunctional structures for multifunctional bioelectronics and devices.
导电水凝胶在从柔性传感器和电子皮肤应用到个性化医疗监测等领域具有广阔的应用前景。然而,开发具有高机械性能和优异可印刷性的本征导电聚合物水凝胶(ICPH)仍然具有挑战性。在这里,我们通过合理设计配位和正交钌光化学(CORP),提出了一种同时促进聚合和增强机械性能的策略,以构建基于 PEDOT 的 ICPH。这种正交光化学反应在蓝光照射下可在几秒钟内引发 EDOT 的氧化聚合和酚类化合物的偶联。得益于双功能 EDTA-Fe 的设计,光释放的 Fe(III) 加速了 EDOT 的聚合,并将 ICPH 的制备时间缩短至几秒钟。同时,EDTA-Fe 的添加提高了水凝胶的机械性能,使水凝胶的临界应变和最大应力提高了一倍。此外,在 PAA-Ph 中引入酚基残留物可将凝胶时间从几分钟缩短到约 7 秒。因此,这种快速可控的 CORP 化学与标准印刷技术兼容,可用于工程化水凝胶以制造用于多功能生物电子学和器件的复杂多功能结构。