Rationally Designed Fluorescence Turn-On Sensors: A New Design Strategy Based on Orbital Control

  • Jung, Hyo Sung
  • Ko, Kyoung Chul
  • Lee, Jae Hong
  • Kim, Sang Hoon
  • Bhuniya, Sankarprasad
  • ... Kim, Jong Seung
  • 외 3명
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초록

Herein, we explore a new strategy in the chemo-sensor field for fluorescence amplification upon binding with metal ions based on controlled participation of the nitrogen lone pair orbital. The basic architecture of the sensor entails a fluorophore, the sp(2) hybridized nitrogen lone pair (-C=N-), and a chelator site referred to as the control part. Though nonplanar and nonfluorescent, compound IC1 achieved pseudo planarity from binding with Zn2+ as indicated by the increased fluorescence signal. Its other analogue (IC2) is also planar, and unlike IC1-Zn2+ was fluorescent with a lack of binding affinity to metal ions. The time-dependent density functional theory (TDDFT) calculations revealed that the fluorescence amplification was due to the blocking of the nitrogen lone pair orbital; unlikely geometrical rearrangements were insignificant. This could indicate a breakthrough concept in the future design of fluorescent turn-on sensors.

키워드

LIVING CELLSSIGNALING MECHANISMAQUEOUS-SOLUTIONMETAL-IONSZINC IONSLOWER-RIMCHEMOSENSORRECOGNITIONEXCIMERCATION
제목
Rationally Designed Fluorescence Turn-On Sensors: A New Design Strategy Based on Orbital Control
저자
Jung, Hyo SungKo, Kyoung ChulLee, Jae HongKim, Sang HoonBhuniya, SankarprasadLee, Jin YongKim, YoungmeeKim, Sung JinKim, Jong Seung
DOI
10.1021/ic101165k
발행일
2010-09-20
유형
Article
저널명
Inorganic Chemistry
49
18
페이지
8552 ~ 8557