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Effects of the intercalation rate on the layered crystal structures and stimuli-responsive color-change properties of polydiacetylene

机译:嵌入速率对分层晶体结构和刺激响应性的多二亚二乙烯的抗性变化性能

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摘要

Intercalation chemistry has been developed mainly in inorganic layered compounds. Organic layered materials, such as layered polydiacetylene (PDA), exhibit the intercalation nature and dynamic properties. The intercalation of guest ions or molecules has the potential to control the dynamic properties through changes in the structural stability of the organic layered materials. Here we found that the partial intercalation states of the guest ions induced the changes in the layered structures and dynamic properties of PDA. The concentration of the intercalated metal ions, such as zinc ions (Zn2+), was controlled in the layered PDA. Although the layered PDA without the intercalation of the guest showed irreversible color transition from blue to red at a certain temperature, the temperature-responsive and reversible color-change properties emerged from the Zn2+-intercalated layered PDA even at the partial intercalation states. The results indicate that the structures and dynamic properties of organic layered materials can be controlled by the partial intercalation state.
机译:嵌入化学主要是在无机层状化合物中开发的。有机分层材料,例如层状多二乙烯(PDA),表现出插层性质和动态性质。客体离子或分子的插层具有通过有机层状材料的结构稳定性的变化来控制动态性质。在这里,我们发现客体离子的部分嵌入状态诱导了PDA的分层结构和动态特性的变化。在层状PDA中控制嵌入金属离子(例如锌离子(Zn2 +)的浓度。虽然层状PDA在没有访客的插入的情况下,在一定温度下,从蓝色显示不可逆的颜色过渡,但即使在部分插入状态下,温度响应性和可逆变色性能也是从Zn2 +酸间分层的PDA出来的。结果表明有机层状材料的结构和动态性能可以通过部分嵌入状态来控制。

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