显示bar范围内压力变化的压电致变色聚合物材料

A. Seeboth, D. Loetzsch, R. Ruhmann
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引用次数: 35

摘要

开发了一种压致变色材料,在整个可见光范围内表现出压力依赖的选择性反射波长的可逆移位。该材料由胆甾体混合物组成,嵌入胆甾体弹性体基质中,具有类似分子结构的介生侧链。选择性反射的变化源于可压缩螺旋结构。因此,螺距长度是通过压力变化来切换的。要触发可逆的压致变色效应,bar范围内的压力变化就足够了。压力控制的颜色变化很容易被人眼检测到,即使在100次循环后仍然出现。基于无机晶体材料(如LiF或NaCl单晶)改性变化的压致变色效应是几十年来已知的现象。例如,CuMoO4从绿色α-到红色γ-的转变需要2.5 kbar的压力,而钯配合物的转变需要1.4到6.5 GPa(=14到65 kbar)的压力(1,2)。然而,由于这些材料的高压特性,使得它们不适合作为日常生活中的压力传感器。在有机高分子材料中,压力引起的颜色变化是经常发生的,但迄今为止在文献中还没有系统的描述。当压力从大气压增加到8 kbar时,观察到聚(3-十二烷基噻吩)的吸收带发生了色移。在文献(4)中,当压力从常压增加到10.71 GPa (=107.1 kbar)时,聚(3-(1-十二烷基)噻吩-2,5-二基)的色移从605 nm到672 nm(∆λ = 67 nm)。这些共轭聚合物的压致变色效应是基于吸附带的压力相关位移。目前工作的目的是开发压致变色聚合物材料,首次表现出人眼可以检测到的颜色变化,这种变化依赖于小到几巴的压差。这种材料可以用作普通生活领域的光学压力传感器。我们的策略是基于有关的知识,制备具有选择性的胆甾聚合物材料
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Piezochromic Polymer Materials Displaying Pressure Changes in Bar-Ranges
A piezochromic material exhibiting a pressure dependent reversible shift of the selective reflection wavelength via the entire visible range is developed. The material consists of a cholesteric mixture embedded in a cholesteric elastomer matrix bearing mesogenic side chains with similar molecular structure. The change of the selective reflection has its origin in a compressible helix structure. Thus, the pitch length is switched by pressure changes. To trigger the reversible piezochromic effect already pressure changes in bar-range are sufficient. The pressure controlled colour changes are excellent detectable by the human eye and still appear even after 100 cycles. Piezochromic effects based on modification changes of inorganic crystalline materials, such as LiF or NaCl monocrystals, are known phenomena since several decades. For example, the transition from the green α- into the red γ-modification of CuMoO4 requires a pressure of 2.5 kbar and transitions in palladium complexes are reported to re- quire pressures ranging from 1.4 to 6.5 GPa (=14 to 65 kbar)(1,2). However, the high pressure which is necessary for the modification changes makes these materials unsuit- able as pressure sensors in the ordinary area of life. Colour changes by pressure in organic polymer materials are fre- quently but not systematically described in literature so far. A bathochromic shift of the absorption band of poly (3-dodecylthiophene) was observed by increasing the pres- sure from atmospheric pressure to 8 kbar(3). In reference(4) a bathochromic shift from 605 nm to 672 nm (∆λ = 67 nm) is reported for poly(3-(1-dodecyl) thiophene-2,5-diyl) when the pressure is increased from normal pressure to 10.71 GPa (=107.1 kbar). The piezochromic effect of these conjugated polymers is based on pressure dependent shifts of the ab- sorption band. The aim of the present work was to develop piezochromic polymer materials exhibiting, for the first time, colour changes detectable with the human eye in dependence of pressure differences as small as a few bar. Such material could be used as an optical pressure sensor in the ordinary area of life. Our strategy is based on the knowledge about the preparation of cholesteric polymer materials with a selective
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