Wang Lijun, Zhou Wanfu, Tang Quan, Yang Haiyang, Zhou Qiang, Zhang Xingyuan
CAS Key Laboratory of Soft Matter Chemistry, School of Chemistry and Materials Science, University of Science and Technology of China, Hefei 230026, China.
Oil Production Technology Institute, Daqing Oilfield Company Ltd., Daqing 163453, China.
Polymers (Basel). 2018 Sep 6;10(9):994. doi: 10.3390/polym10090994.
Smart materials responsible to external stimuli such as temperature, pH, solvents, light, redox agents, and mechanical or electric/magnetic field, have drawn considerable attention recently. Herein, we described a novel rhodamine (Rh) mechanophore-based mechanoresponsive micellar hydrogel with excellent mechanochromic and mechanofluorescent properties. We found with astonishment that, due to the favorable activation of rhodamine spirolactam in the presence of water, together with the stress concentration effect, the mechanoresponsive sensitivity of this hydrogel was enhanced significantly. As a result, the stress needed to trigger the mechanochromic property of Rh in the hydrogel was much lower than in its native polymer matrix reported before. The hydrogel based on Rh, therefore, exhibited excellent mechanochromic property even at lower stress. Moreover, due to the reversibility of color on/off, the hydrogel based on Rh could be used as a reusable and erasable material for color printing/writing. Of peculiar importance is that the hydrogel could emit highly bright fluorescence under sufficient stress or strain. This suggested that the stress/strain of hydrogel could be detected quantificationally and effectively by the fluorescence data. We also found that the hydrogel could respond to acid/alkali and exhibited outstanding properties of acidichromism and acidifluorochromism. Up to now, hydrogels with such excellent mechanochromic and mechanofluorescent properties have rarely been reported. Our efforts may be essentially beneficial to the design of the mechanochromic and mechanofluorescent hydrogels with enhanced mechanoresponsive sensitivity, fostering their potential applications in a number of fields such as damage or stress/strain detection.
对温度、pH值、溶剂、光、氧化还原试剂以及机械或电场/磁场等外部刺激有响应的智能材料,近年来受到了广泛关注。在此,我们描述了一种基于新型罗丹明(Rh)机械响应基团的机械响应性胶束水凝胶,它具有优异的机械变色和机械荧光性能。我们惊讶地发现,由于在水存在下罗丹明螺内酰胺的有利活化,以及应力集中效应,这种水凝胶的机械响应灵敏度显著提高。结果,触发水凝胶中Rh机械变色性能所需的应力远低于之前报道的其天然聚合物基质中的应力。因此,基于Rh的水凝胶即使在较低应力下也表现出优异的机械变色性能。此外,由于颜色开/关的可逆性,基于Rh的水凝胶可用作彩色印刷/书写的可重复使用和可擦除材料。特别重要的是,该水凝胶在足够的应力或应变下能发出高亮度荧光。这表明水凝胶的应力/应变可以通过荧光数据进行定量和有效检测。我们还发现该水凝胶能对酸/碱作出响应,并表现出优异的酸致变色和酸致荧光变色性能。到目前为止,很少有报道具有如此优异机械变色和机械荧光性能的水凝胶。我们的努力可能对设计具有增强机械响应灵敏度的机械变色和机械荧光水凝胶至关重要,促进它们在损伤或应力/应变检测等许多领域的潜在应用。