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Piezochromism and hydrochromism through electron transfer: new stories for viologen materials

机译:通过电子转移的压致变色和水致变色:紫精材料的新故事

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While viologen derivatives have long been known for electrochromism and photochromism, here we demonstrated that a viologen-carboxylate zwitterionic molecule in the crystalline state exhibits piezochromic and hydrochromic behaviors. The yellow crystal undergoes a reversible color change to red under high pressure, to green after decompression, and finally back to yellow upon standing at ambient pressure. Ultraviolet-visible spectroscopy, X-ray photoelectron spectroscopy, electron paramagnetic resonance X-ray diffraction and DFT calculations suggested that the piezochromism is due to the formation of radicals via pressure-induced electron transfer from carboxylate to pyridinium, without a crystallographic phase transition. It was proposed that electron transfer is induced by pressure-forced reduction of intermolecular donor–acceptor contacts. The electron transfer can also be induced by dehydration, which gives a stable green anhydrous radical phase. The color change is reversible upon reabsorption of water, which triggers reverse electron transfer. The compound not only demonstrates new chromic phenomena for viologen compounds, but also represents the first example of organic mechanochromism and hydrochromism associated with radical formation via electron transfer.
机译:尽管紫罗兰色衍生物因电致变色和光致变色现象早已为人所知,但在这里我们证明了处于结晶状态的紫罗兰色羧酸盐两性离子分子表现出压电致变色和水致变色行为。黄色晶体在高压下经历可逆的颜色变化,变为红色,在减压后变为绿色,最后在环境压力下恢复为黄色。紫外可见光谱法,X射线光电子能谱法,电子顺磁共振X射线衍射法和DFT计算表明,压致变色现象是由于压力诱导的电子从羧酸盐到吡啶鎓的电子转移形成了自由基。没有结晶相变。有人提出,电子传递是通过压力迫使分子间供体-受体接触减少而引起的。也可以通过脱水来诱导电子转移,从而得到稳定的绿色无水自由基相。重新吸收水后颜色变化是可逆的,这会触发反向电子转移。该化合物不仅显示出紫精化合物的新变色现象,而且代表了与通过电子转移形成自由基有关的有机机械变色和氢致变色的第一个例子。

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