首页> 外文期刊>Chemistry, an Asian journal >Two-Photon Polarity Probes Built from Octupolar Fluorophores: Synthesis, Structure-Properties Relationships, and Use in Cellular Imaging
【24h】

Two-Photon Polarity Probes Built from Octupolar Fluorophores: Synthesis, Structure-Properties Relationships, and Use in Cellular Imaging

机译:由八极荧光团构建的双光子极性探针:合成,结构-性能关系,以及在细胞成像中的使用。

获取原文
获取原文并翻译 | 示例
           

摘要

A series of octupolar fluorophores built from a triphenylamine (TPA) core connected to electron-withdrawing (EW) peripheral groups through conjugated spacers has been synthesized. Their photoluminescence, solvatochromism, and two-photon absorption (2PA) properties were systematically investigated to derive structure-property relationships. All derivatives exhibit two 2PA bands in the 700-1000 nm region: a first band at low energy correlated with a core-to-periphery intramolecular charge transfer that leads to an intense 1PA in the blue-visible range, and a second more intense band at higher energy due to an efficient coupling of the branches through the TPA core. Increasing the strength of the EW end groups or the length of the conjugated spacers and replacing triple-bond linkers with double bonds induces both enhancement and broadening of the 2PA responses, thereby leading to cross-sections up to 2100 GM at peak and higher than 1000 GM over the whole 700-900 nm range. All derivatives exhibit intense photoluminescence (PL) in low- to medium-polarity environments (with quantum yields in the 0.5-0.9 range) and display a strong positive solvatochromic behavior (with Lippert-Mataga specific shifts ranging from 15000 to 27500 cm~(-1)), triple bonds, and phenyl moieties in the conjugated spacers, thereby leading to larger sensitivities than those of double bonds and thienyl moieties. More hydrophilic derivatives were also shown to be biocompatible, to retain their 2PA and PL properties in biological conditions, and finally to be suitable as polarity sensors for multiphoton cell imaging.
机译:合成了由三苯胺(TPA)核通过共轭间隔基与吸电子(EW)外围基团连接的一系列八极荧光团。系统地研究了它们的光致发光,溶剂变色和双光子吸收(2PA)特性,以推导其结构性质关系。所有衍生物在700-1000 nm区域均显示两个2PA谱带:低能级的第一个谱带与核心到外围的分子内电荷转移相关,从而导致蓝可见范围内的1PA增强,第二个更强的谱带由于通过TPA磁芯的分支之间的有效耦合,因此能量更高。增加EW端基的强度或共轭间隔基的长度,并用双键代替三键连接基团可诱导2PA反应的增强和扩宽,从而导致在最高峰处和在大于1000处的横截面高达2100 GM GM在整个700-900 nm范围内。所有衍生物在低至中极性环境下(量子产率在0.5-0.9范围内)均表现出强烈的光致发光(PL),并表现出强的正溶剂化行为(Lippert-Mataga比色范围为15000至27500 cm〜(- 1)),共轭间隔基中的三键和苯基部分,从而导致灵敏度高于双键和噻吩基部分。还显示出更多的亲水性衍生物具有生物相容性,可以在生物条件下保留其2PA和PL性质,并最终适合用作多光子细胞成像的极性传感器。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号