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  • 【Small】Microenvironment Engineering of Polyviologens for Tunable Ion-Trapping and Multimodal Chromic Behavior
  • 来源:石恒冲研究员个人网站 2026-10-09
  • Smart responsive chromic materials are attractive for displays, information encryption, and optical modulation because of their dynamically tunable optical properties. Viologen-based materials are particularly appealing owing to their reversible redox activity and versatile color tunability, yet how local polymer microenvironments regulate counter-ion accessibility and electrochromic kinetics remains insufficiently understood. Herein, we establish a molecular-to-polymer microenvironment-engineering strategy by integrating polymerizable viologen derivatives bearing systematically varied alkyl and aromatic substituents into covalent polymers. At the molecular level, substituent electronic and steric characteristics regulate reduction thermodynamics, reduced-state intermolecular association, and chromic response. Upon covalent integration, polymer confinement increases the local concentration of electroactive viologen units and facilitates charge utilization. More importantly, side-chain-dependent polymer microenvironments lead to contrasting electrochromic switching behaviors: flexible alkyl-substituted PStMB exhibits faster switching, whereas rigid aromatic/cyano-containing PStZCN provides higher optical contrast but slower switching. These differences support a relative shallow/deep ion-trapping picture associated with different degrees of counter-ion confinement, accessibility, and exchange behavior. The resulting polyviologens enable proof-of-concept demonstrations in electrochromic devices, inkless multicolor displays, and information encryption, while the established structure-microenvironment relationship provides a microenvironment-engineering strategy for tuning the stability-kinetics balance in multimodal viologen chromic systems.
  • [来源:中国聚合物网]
  • 了解更多请进入: 石恒冲研究员个人网站
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