Issue 4, 2013

Dual-emitting nanocomposites derived from rare-earth compound nanotubes for ratiometric fluorescence sensing applications

Abstract

A new class of ratiometric fluorescence sensors composed of rare-earth (RE) compound nanotubes is described. Polyethylenimine-coated yttrium hydroxide fluoride nanotubes (YHF NTs) that were synthesized hydrothermally exhibit highly efficient fluorescence when doped with RE ions. The polyethylenimine on the NTs facilitates the incorporation of phosphors such as quantum dots or organic dyes onto the NT surface to produce dual-emitting nanocomposites which are excellent ratiometric fluorescence sensors. The phosphor layer and underlying tubes in the nanocomposites act as the indicator and reference probes, respectively. This ratiometric fluorescence method which can be applied to the detection of heavy metals in solutions, temperature sensing, and pH sensing boasts high sensitivity and selectivity as well as better accuracy than traditional intensity-based fluorescence methods.

Graphical abstract: Dual-emitting nanocomposites derived from rare-earth compound nanotubes for ratiometric fluorescence sensing applications

Supplementary files

Article information

Article type
Paper
Submitted
17 Oct 2012
Accepted
15 Dec 2012
First published
18 Dec 2012

Nanoscale, 2013,5, 1629-1637

Dual-emitting nanocomposites derived from rare-earth compound nanotubes for ratiometric fluorescence sensing applications

T. Sun, D. Zhang, X. Yu, Y. Xiang, M. Luo, J. Wang, G. Tan, Q. Wang and P. K. Chu, Nanoscale, 2013, 5, 1629 DOI: 10.1039/C2NR33217E

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