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一种合理设计的基于二吡咯乙烯的生色团的pH响应超分子开关。

pH-responsive supramolecular switch of a rationally designed dipyrroethene-based chromophore.

作者信息

Mandal Debasish, Sarkar Abani, Behera Kanhu Charan, Ravikanth Mangalampalli

机构信息

Department of Chemistry, Indian Institute of Technology Bombay Powai Mumbai-400076 India

出版信息

Chem Sci. 2024 Dec 16;16(4):1772-1782. doi: 10.1039/d4sc07016j. eCollection 2025 Jan 22.

Abstract

Herein, we present a strategy to access a novel class of pH-responsive, dual-state emissive (DSE), highly fluorescent pyrrole-based chromophores diformylation of dipyrroethenes (DPE) followed by condensation with various aniline derivatives. The DPE-based chromophores exhibit a large Stokes shift and maintain good fluorescence quantum yields. Remarkably, these chromophores demonstrate reversible colourimetric changes and a fluorometric 'on-off-on' switch in response to pH variations. Various spectroscopic techniques, optical microscopy, X-ray crystallography, and computational studies revealed that the synthesized molecules adopt a two-dimensional conformation due to the presence of strong π⋯π stacking and hydrogen bonding interactions, allowing them to function as flexible molecular hosts. Under acidic conditions, selective protonation of imine bonds and subsequent complexation with the counter anion enhance the host-guest interactions, resulting in a stable three-dimensional supramolecular structure. Notably, the reversibility of these molecules under basic conditions showcases the robustness and potential applications of these chromophores in various fields, ranging from the design of finely tuned pH-responsive degradable polymers to self-healing materials, as well as sensing and molecular devices.

摘要

在此,我们提出了一种策略,通过二吡咯乙烯(DPE)的二甲酰化反应,然后与各种苯胺衍生物缩合,来获得一类新型的pH响应性、双态发射(DSE)、高荧光性的基于吡咯的发色团。基于DPE的发色团表现出较大的斯托克斯位移,并保持良好的荧光量子产率。值得注意的是,这些发色团在响应pH变化时表现出可逆的比色变化和荧光“开-关-开”切换。各种光谱技术、光学显微镜、X射线晶体学和计算研究表明,由于存在强π⋯π堆积和氢键相互作用,合成的分子采用二维构象,使其能够作为灵活的分子主体发挥作用。在酸性条件下,亚胺键的选择性质子化以及随后与抗衡阴离子的络合增强了主客体相互作用,形成了稳定的三维超分子结构。值得注意的是,这些分子在碱性条件下的可逆性展示了这些发色团在从精细调谐的pH响应性可降解聚合物设计到自愈材料以及传感和分子器件等各个领域的稳健性和潜在应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2003/11753044/163f8e7fa1c4/d4sc07016j-s1.jpg

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