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Yuen-Zhou, J., Arias, D.H., Eisele, D.M., Steiner, C.P., Krich, J.J., Bawendi, M.G., Nelson, K.A. and Aspuru-Guzik, A. (2014) Coherent Exciton Dynamics in Supramolecular Light-Harvesting Nanotubes Revealed by Ultrafast Quantum Process Tomography. ACS Nano, 8, 5527-5534.
https://doi.org/10.1021/nn406107q
has been cited by the following article:
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TITLE:
Templated J-Aggregate Nanotubes for the Detection of Dopamine
AUTHORS:
Samuel Rhodes, Xiaochen Wang, Wenlang Liang, Hyoung Jin Cho, Jiyu Fang
KEYWORDS:
Cyanine Dyes, Bile Acids, J-Aggregate Nanotubes, Dopamine, Detection
JOURNAL NAME:
Journal of Materials Science and Chemical Engineering,
Vol.5 No.1,
January
23,
2017
ABSTRACT: J-aggregates of dye molecules are a unique supramolecular structure, which shows great promise in photoelectric devices due to its remarkable optical and transport properties. In this paper, we report the templated formation of J-aggregate nanotubes by the adsorption of 3,3’-diethylthiacarbocyanine iodide on the self-assembled nanotubes of lithocholic acid. The optical and electronic properties of the templated J-aggregate nanotubes are studied. A sensor platform is fabricated by depositing the J-aggregate nanotubes on interdigitated gold electrodes for the detection of dopamine (DA). We find that the current change of the J-aggregate nanotube-based sensor platform in response to DA is linear in the concentration range from 10 nM to 70 nM, giving the detection limit of 0.27 nM.