Please use this identifier to cite or link to this item: https://hdl.handle.net/2440/97092
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Type: Journal article
Title: Lanthanide luminescence enhancements in porous silicon resonant microcavities
Author: Jenie, S.
Pace, S.
Sciacca, B.
Brooks, R.
Plush, S.
Voelcker, N.
Citation: ACS Applied Materials and Interfaces, 2014; 6(15):12012-12021
Publisher: American Chemical Society
Issue Date: 2014
ISSN: 1944-8244
1944-8252
Statement of
Responsibility: 
S. N. Aisyiyah Jenie, Stephanie Pace, Beniamino Sciacca, Robert D. Brooks, Sally E. Plush, and Nicolas H. Voelcker
Abstract: In this paper, the covalent immobilization and luminescence enhancement of a europium (Eu(III)) complex in a porous silicon (pSi) layer with a microcavity (pSiMC) structure are demonstrated. The alkyne-pendant arm of the Eu(III) complex was covalently immobilized on the azide-modified surface via ligand-assisted "click" chemistry. The design parameters of the microcavity were optimized to obtain an efficient luminescence-enhancing device. Luminescence enhancements by a factor of 9.5 and 3.0 were observed for Eu(III) complex bound inside the pSiMC as compared to a single layer and Bragg reflector of identical thickness, respectively, confirming the increased interaction between the immobilized molecules and the electric field in the spacer of the microcavity. When comparing pSiMCs with different resonance wavelength position, luminescence was enhanced when the resonance wavelength overlapped with the maximum emission wavelength of the Eu(III) complex at 614 nm, allowing for effective coupling between the confined light and the emitting molecules. The pSiMC also improved the spectral color purity of the Eu(III) complex luminescence. The ability of a pSiMC to act as an efficient Eu(III) luminescence enhancer, combined with the resulting sharp linelike emission, can be exploited for the development of ultrasensitive optical biosensors.
Keywords: porous silicon; microcavity; luminescence enhancement; europium; click reaction
Rights: © 2014 American Chemical Society
DOI: 10.1021/am500983r
Published version: http://dx.doi.org/10.1021/am500983r
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