Division of Chemistry and Chemical Engineering, California Institute of Technology, Pasadena, CA, USA.
Nat Chem. 2023 Mar;15(3):332-338. doi: 10.1038/s41557-022-01126-5. Epub 2023 Jan 23.
Stress-sensitive molecules called mechanophores undergo productive chemical transformations in response to mechanical force. A variety of mechanochromic mechanophores, which change colour in response to stress, have been developed, but modulating the properties of the dyes generally requires the independent preparation of discrete derivatives. Here we introduce a mechanophore platform enabling mechanically gated multicolour chromogenic reactivity. The mechanophore is based on an activated furan precursor to donor-acceptor Stenhouse adducts (DASAs) masked as a hetero-Diels-Alder adduct. Mechanochemical activation of the mechanophore unveils the DASA precursor, and subsequent reaction with a secondary amine generates an intensely coloured DASA. Critically, the properties of the DASA are controlled by the amine, and thus a single mechanophore can be differentiated post-activation to produce a wide range of functionally diverse DASAs. We highlight this system by establishing the concept of mechanochemical multicolour soft lithography whereby a complex multicolour composite image is printed into a mechanochemically active elastomer through an iterative process of localized compression followed by reaction with different amines.
应激敏感分子,又称力敏分子,在受到机械力作用时会发生有意义的化学转化。已经开发出了各种对压力响应变色的机械变色力敏分子,但通常需要独立制备离散衍生物来调节染料的性质。在这里,我们介绍了一种机械力敏分子平台,它可以实现机械门控多色显色反应。该力敏分子基于受激呋喃前体,可形成给体-受体 Stenhouse 加合物(DASAs),其被掩蔽为杂 Diels-Alder 加合物。机械化学激活力敏分子可揭示 DASA 前体,随后与仲胺反应生成强烈着色的 DASA。关键的是,DASA 的性质受胺控制,因此,单个力敏分子可以在激活后进行区分,以产生广泛的具有不同功能的 DASAs。我们通过建立机械化学多色软光刻的概念来强调这个系统,通过局部压缩然后与不同的胺反应的迭代过程,将复杂的多色复合图像打印到机械化学活性弹性体中。