低临界溶液温度
材料科学
氧化还原
钋
二茂铁
亚硫酸盐
相变
侧链
聚合物
离子液体
化学工程
铁氰化物
智能聚合物
相(物质)
高分子化学
电化学
无机化学
有机化学
电极
化学
物理化学
催化作用
共聚物
冶金
复合材料
工程类
物理
量子力学
作者
Kaihuan Zhang,Minmin Zhang,Xueling Feng,Mark A. Hempenius,G. Julius Vancsó
标识
DOI:10.1002/adfm.201702784
摘要
Abstract A novel organometallic poly(ionic liquid) with both redox‐ and thermoresponsive properties is synthesized from a poly(ferrocenylsilane) (PFS) via a one‐step Strecker sulfite alkylation reaction by using tetraalkylphosphonium sulfite as an effective and versatile nucleophile. This dual‐responsive polymer is composed of a PFS backbone and quaternary phosphonium sulfonate side groups and exhibits a concentration‐dependent lower critical solution temperature (LCST)‐type phase transition in aqueous solution. Furthermore, the LCST‐type phase behavior of the polymer can be switched between the “off” state and “on” state by chemical or electrochemical oxidation and reduction on the ferrocene units in the polymer main chain. As a consequence, a classical LCST‐type phase transition, as well as an “isothermal” redox‐triggered phase transition can be induced by using thermal and electrochemical triggers without changing the composition of the system. On the basis of this dual responsiveness, a “smart window” device is fabricated. The optical characteristics of this device are completely unaltered after 100 thermal and/or redox cycles.
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