Fabrication of self-assembled monolayer based on phenylethynylbenzene and fluorescent probe pyrene and detecting for nitroanilines

Jinting Hu, Yang Liu, Kai Yang, Jianbing Shi, Bin Tong, Junge Zhi*, Yuping Dong

*Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

2 Citations (Scopus)

Abstract

Self-Assembled monolayers (SAMs), a new type of organic ultra-thin films, show a lot of interesting properties in chemistry, physics, optics and electronic transport, and have potential application in biomaterials, nanoelectro-mechanical systems, sensors, and so on. In this paper, a full-conjugated unit-containing SAM ended with a functional amino group (NH2) was fabricated by self-assembly and using a light-sensitive diazonium-containing compound 4-(4-amino phenylene ethynyl) benzenic diazonium salt (APEB-N2+). The APEB-N2+ was easily deposited on a pre-treated quartz substrate with negative charges by electrostatic interaction and then grafted on the surface of a quartz substrate through covalent bond after the decomposition of diazonium group under UV irradiation, and a stable SAM based on phenylethynylbenzene was obtained. Furthermore, based on the reactivity of the functional group NH2, the fluorescent probe pyrene is anchored on the surface of the full-conjugated SAM through two approaches: amidation reaction between amino group on the SAM and carboxyl group of 1-pyrenebutyric acid, and self-assembly of N2+, which is transferred from NH2 on SAM, and electronegative COO-of 1-pyrenebutyric acid in basic aqueous solution. The obtained ultra-thin films with fluorescence probe pyrene exhibit luminescent property because of the emission of excimer of pyrene chromophore, which is mainly due to the formation of the g-g conformation of pyrene for the induction effect of the full-conjugated SAM. The electron-acceptor nitroanilines (NAs) can quench the fluorescence of the obtained ultra-thin film because of electron and energy transfer between the electron-rich pyrene and NAs. The fluorescence quenching varies obviously for the different isomers of NA, and the quenching efficiency decreases according to the sequence of p-NA, o-NA, m-NA, because the electronic effect varies obviously when the relative position of electron withdrawing group NO2 and donating group NH2 of NA are different. The fluorescence of the ultra-thin film decreases with the increasing of the NA concentration.

Original languageEnglish
Pages (from-to)1987-1992
Number of pages6
JournalActa Chimica Sinica
Volume70
Issue number18
DOIs
Publication statusPublished - 28 Mar 2012

Keywords

  • Conjugated self-assembled monolayer
  • Detection of nitroaniline
  • Luminescent property
  • Photochemistry of diazonium salts
  • Pyrene

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